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B Ramadevi | University of Hyderabad - Academia.edu

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id="Pill-react-component-3099d8a9-65e6-454d-a021-18aae8a6f083"></div> </a></div></div></div></div><div class="right-panel-container"><div class="user-content-wrapper"><div class="uploads-container" id="social-redesign-work-container"><div class="upload-header"><h2 class="ds2-5-heading-sans-serif-xs">Uploads</h2></div><div class="documents-container backbone-social-profile-documents" style="width: 100%;"><div class="u-taCenter"></div><div class="profile--tab_content_container js-tab-pane tab-pane active" id="all"><div class="profile--tab_heading_container js-section-heading" data-section="Papers" id="Papers"><h3 class="profile--tab_heading_container">Papers by B Ramadevi</h3></div><div class="js-work-strip profile--work_container" data-work-id="7278224"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278224/Construction_of_Yangian_algebra_through_a_multi_deformation_parameter_dependent_rational_R_matrix"><img alt="Research paper thumbnail of Construction of Yangian algebra through a multi-deformation parameter dependent rational $R$-matrix" class="work-thumbnail" src="https://attachments.academia-assets.com/33888317/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278224/Construction_of_Yangian_algebra_through_a_multi_deformation_parameter_dependent_rational_R_matrix">Construction of Yangian algebra through a multi-deformation parameter dependent rational $R$-matrix</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Yang-Baxterising a braid group representation associated with multideformed version of $GL_{q}(N)...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Yang-Baxterising a braid group representation associated with multideformed version of $GL_{q}(N)$ quantum group and taking the corresponding $q\rightarrow 1$ limit, we obtain a rational $R$-matrix which depends on $\left ( 1+ {N(N-1) \over 2} \right ) $ number of deformation parameters. By using such rational $R$-matrix subsequently we construct a multiparameter dependent extension of $Y(gl_N)$ Yangian algebra and find that this extended algebra leads to a modification of usual asymptotic condition on monodromy matrix $T(\lambda )$, at $ \lambda \rightarrow \infty $ limit. Moreover, it turns out that, there exists a nonlinear realisation of this extended algebra through the generators of original $Y(gl_N)$ algebra. Such realisation interestingly provides a novel $\left ( 1 + { N(N-1) \over 2 } \right ) $ number of deformation parameter dependent coproduct for standard $Y(gl_N)$ algebra.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="cdcbf1fe6b3dbd2d6e2e6951bdef742c" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:33888317,&quot;asset_id&quot;:7278224,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/33888317/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278224"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278224"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278224; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=7278224]").text(description); $(".js-view-count[data-work-id=7278224]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 7278224; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='7278224']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 7278224, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "cdcbf1fe6b3dbd2d6e2e6951bdef742c" } } $('.js-work-strip[data-work-id=7278224]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":7278224,"title":"Construction of Yangian algebra through a multi-deformation parameter dependent rational $R$-matrix","translated_title":"","metadata":{"abstract":"Yang-Baxterising a braid group representation associated with multideformed version of $GL_{q}(N)$ quantum group and taking the corresponding $q\\rightarrow 1$ limit, we obtain a rational $R$-matrix which depends on $\\left ( 1+ {N(N-1) \\over 2} \\right ) $ number of deformation parameters. By using such rational $R$-matrix subsequently we construct a multiparameter dependent extension of $Y(gl_N)$ Yangian algebra and find that this extended algebra leads to a modification of usual asymptotic condition on monodromy matrix $T(\\lambda )$, at $ \\lambda \\rightarrow \\infty $ limit. Moreover, it turns out that, there exists a nonlinear realisation of this extended algebra through the generators of original $Y(gl_N)$ algebra. Such realisation interestingly provides a novel $\\left ( 1 + { N(N-1) \\over 2 } \\right ) $ number of deformation parameter dependent coproduct for standard $Y(gl_N)$ algebra.","publication_date":{"day":null,"month":null,"year":1994,"errors":{}}},"translated_abstract":"Yang-Baxterising a braid group representation associated with multideformed version of $GL_{q}(N)$ quantum group and taking the corresponding $q\\rightarrow 1$ limit, we obtain a rational $R$-matrix which depends on $\\left ( 1+ {N(N-1) \\over 2} \\right ) $ number of deformation parameters. By using such rational $R$-matrix subsequently we construct a multiparameter dependent extension of $Y(gl_N)$ Yangian algebra and find that this extended algebra leads to a modification of usual asymptotic condition on monodromy matrix $T(\\lambda )$, at $ \\lambda \\rightarrow \\infty $ limit. 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thumbnail of Withanolide induces apoptosis in HL60 leukemia cells via mitochondria mediated cytochrome c release and caspase activation" class="work-thumbnail" src="https://attachments.academia-assets.com/48540310/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278222/Withanolide_induces_apoptosis_in_HL60_leukemia_cells_via_mitochondria_mediated_cytochrome_c_release_and_caspase_activation">Withanolide induces apoptosis in HL60 leukemia cells via mitochondria mediated cytochrome c release and caspase activation</a></div><div class="wp-workCard_item"><span>Chemico-biological Interactions</span><span>, 2007</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="106766bf5041e72c0a7c25ff8c8d1bc4" 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container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "106766bf5041e72c0a7c25ff8c8d1bc4" } } $('.js-work-strip[data-work-id=7278222]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":7278222,"title":"Withanolide induces apoptosis in HL60 leukemia cells via mitochondria mediated cytochrome c release and caspase activation","translated_title":"","metadata":{"grobid_abstract":"The present study is on the growth inhibitory effect of Withania somnifera methanolic leaf extract and its active component, withanolide on HL-60 promyelocytic leukemia cells. The decrease in survival rate of HL-60 cells was noted to be associated with a time dependent decrease in the Bcl-2/Bax ratio, leading to up regulation of Bax. Both the crude leaf extract and the active component activated the apoptotic cascade through the cytochrome c release from mitochondria. The activation of caspase 9, caspase 8 and caspase 3 revealed that caspase was a key mediator in the apoptotic pathway. DNA fragmentation analysis revealed typical ladders as early as 12 h indicative of caspase 3 role in the apoptotic pathway. Flow cytometry data demonstrated an increase of sub-G1 peak upon treatment by 51% at 24 h, suggesting the induction of apoptotic cell death in HL-60 cells. (B.S. Lakshmi). reports have demonstrated the anti-tumor activity [2,3], anti-arthritic [4], anti-pyretic and anti-inflammatory [5] activity of this plant. The root extract has shown to have immunomodulatory activity [6], antistress effect [7] and induce iNOS expression [8]. The methanolic root extract of W. somnifera is a rich source of steroidal lactones called withanolides . Similarly the methanolic leaf extracts also include a variety of withanolides [10] and very few studies have investigated the molecular mechanisms of the effect of leaf extracts. These withanolides from leaves are reported to have an antiproliferative activity and possess an inhibitory effect on the cyclooxygenase-2 (COX-2) enzyme .","publication_date":{"day":null,"month":null,"year":2007,"errors":{}},"publication_name":"Chemico-biological 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$a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="7278221"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278221/Multiparametric_and_Colored_Extensions_of_the_Quantum_Group_GLq_N_and_the_Yangian_Algebra_Y_glN_Through_a_Symmetry_Transformation_of_the_Yang_Baxter_Equation"><img alt="Research paper thumbnail of Multiparametric and Colored Extensions of the Quantum Group GLq(N) and the Yangian Algebra Y(glN) Through a Symmetry Transformation of the Yang-Baxter Equation" class="work-thumbnail" src="https://attachments.academia-assets.com/48540340/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278221/Multiparametric_and_Colored_Extensions_of_the_Quantum_Group_GLq_N_and_the_Yangian_Algebra_Y_glN_Through_a_Symmetry_Transformation_of_the_Yang_Baxter_Equation">Multiparametric and Colored Extensions of the Quantum Group GLq(N) and the Yangian Algebra Y(glN) Through a Symmetry Transformation of the Yang-Baxter Equation</a></div><div class="wp-workCard_item"><span>International Journal of Modern Physics A</span><span>, 1997</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Inspired by Reshetikhin&#39;s twisting procedure to obtain multiparametric extensions of a Hopf algeb...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Inspired by Reshetikhin&#39;s twisting procedure to obtain multiparametric extensions of a Hopf algebra, a general &quot;symmetry transformation&quot; of the &quot;particle conserving&quot; R-matrix is found such that the resulting multiparametric R-matrix, with a spectral parameter as well as a color parameter, is also a solution of the Yang-Baxter equation (YBE). The corresponding transformation of the quantum YBE reveals a new relation between the associated quantized algebra and its multiparametric deformation. As applications of this general relation to some particular cases, multiparametric and colored extensions of the quantum group GLq(N) and the Yangian algebra Y(glN) are investigated and their explicit realizations are also discussed. Possible interesting physical applications of such extended Yangian algebras are indicated.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="ab1f6a31051a3067c31a38c965b4843f" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:48540340,&quot;asset_id&quot;:7278221,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/48540340/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278221"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278221"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278221; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=7278221]").text(description); $(".js-view-count[data-work-id=7278221]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 7278221; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='7278221']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 7278221, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "ab1f6a31051a3067c31a38c965b4843f" } } $('.js-work-strip[data-work-id=7278221]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":7278221,"title":"Multiparametric and Colored Extensions of the Quantum Group GLq(N) and the Yangian Algebra Y(glN) Through a Symmetry Transformation of the Yang-Baxter Equation","translated_title":"","metadata":{"abstract":"Inspired by Reshetikhin's twisting procedure to obtain multiparametric extensions of a Hopf algebra, a general \"symmetry transformation\" of the \"particle conserving\" R-matrix is found such that the resulting multiparametric R-matrix, with a spectral parameter as well as a color parameter, is also a solution of the Yang-Baxter equation (YBE). 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="7278220"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278220/Position_calibration_methodology_for_scanning_sky_monitor_for_ASTROSAT"><img alt="Research paper thumbnail of Position calibration methodology for scanning sky monitor for ASTROSAT" class="work-thumbnail" src="https://attachments.academia-assets.com/48540296/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278220/Position_calibration_methodology_for_scanning_sky_monitor_for_ASTROSAT">Position calibration methodology for scanning sky monitor for ASTROSAT</a></div><div class="wp-workCard_item"><span>Experimental Astronomy</span><span>, 2011</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Scanning Sky Monitor (SSM) on ASTROSAT is an X-ray sky monitor which has a large Field of View (F...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Scanning Sky Monitor (SSM) on ASTROSAT is an X-ray sky monitor which has a large Field of View (FOV) and scans the sky to detect and locate X-ray transient sources in the energy range 2 to 10 keV. Experiments are carried out to calibrate SSM detectors for position response and to verify the calibration constants derived. In this paper we discuss the methodology of position calibration of proportional counters for SSM and results from various experiments.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="d0d0c4ef4dd86d4db8a522ab1f561452" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:48540296,&quot;asset_id&quot;:7278220,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/48540296/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278220"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278220"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278220; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=7278220]").text(description); $(".js-view-count[data-work-id=7278220]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 7278220; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='7278220']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 7278220, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "d0d0c4ef4dd86d4db8a522ab1f561452" } } $('.js-work-strip[data-work-id=7278220]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":7278220,"title":"Position calibration methodology for scanning sky monitor for ASTROSAT","translated_title":"","metadata":{"abstract":"Scanning Sky Monitor (SSM) on ASTROSAT is an X-ray sky monitor which has a large Field of View (FOV) and scans the sky to detect and locate X-ray transient sources in the energy range 2 to 10 keV. 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Safety issues regarding quinacrine have been raised because it has been shown to intercalate with DNA. Therefore, safety issues need to be resolved by appropriate toxicology studies to support a review for human transcervical use. Such toxicology studies include mutagenicity assays. Here we report an evaluation of the genotoxicity of quinacrine dihydrochloride dihydrate (QH) using a battery of assays. In the bacterial mutagenicity assay, QH was strongly positive in Salmonella typhimurium tester strain TA1537 with and without S9-activation and in S. typhimurium tester strain TA98 with S9-activation; QH was also strongly positive in Escherichia coli WP2 uvrA without S9-activation. QH was not mutagenic in S. typhimurium tester strains TA100 and TA1535 with and without S9-activation. QH was mutagenic in the mouse lymphoma assay in the absence of S9-activation. QH was clastogenic in Chinese hamster ovary (CHO) cells, with and without S9-activation. QH was negative for polyploidy in the same chromosome aberration test. Using a triple intraperitoneal injection treatment protocol in both male and female mice, QH was negative in the in vivo mouse micronucleated erythrocyte (micronucleus) assay. These results confirm that QH is mutagenic and clastogenic in vitro and suggest a potential risk to human health due to QH exposure after intrauterine exposure.","publication_date":{"day":null,"month":null,"year":2001,"errors":{}},"publication_name":"Mutation Research-genetic Toxicology and Environmental Mutagenesis","grobid_abstract_attachment_id":48540333},"translated_abstract":null,"internal_url":"https://www.academia.edu/7278218/Reevaluation_of_the_mutagenic_potential_of_quinacrine_dihydrochloride_dihydrate","translated_internal_url":"","created_at":"2014-06-06T13:14:19.957-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":12709603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":48540333,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540333/thumbnails/1.jpg","file_name":"s1383-5718_2801_2900178-420160903-31442-1ppzdk6.pdf","download_url":"https://www.academia.edu/attachments/48540333/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Reevaluation_of_the_mutagenic_potential.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540333/s1383-5718_2801_2900178-420160903-31442-1ppzdk6-libre.pdf?1472914971=\u0026response-content-disposition=attachment%3B+filename%3DReevaluation_of_the_mutagenic_potential.pdf\u0026Expires=1732732995\u0026Signature=OmK~bUzYfz01IeohPbgQ9zvwmfnoFmGPIf~UQ9qhY5LkUifDQafDCgVVfX4GWi16aRs8G19Zoy27~wKsAuZYbsJumZyA1jhPUWc9xKi~Ly4b0DED~Lq6KA20DBWg0GAPkMBG4TN-zIDIcsswy28oXavmIOGINHd~XvuPd-JWcdMoOK~jY3uCCJOCt8QmFtJYOvzWxFVpkssqSvTqbqPjuI2OtIiaIB4N2MrGjyUeDouCcAQTe2p9SqvKARVqZtoFhYI8XkK3HtVyfV0xdzqeD5mjsOlYjL1SfYO4yW2M2kPjHIFBxeacBGHyfHI2j12XCZyZ2Gt2glxc5NgD~ed6IA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Reevaluation_of_the_mutagenic_potential_of_quinacrine_dihydrochloride_dihydrate","translated_slug":"","page_count":13,"language":"en","content_type":"Work","owner":{"id":12709603,"first_name":"B","middle_initials":null,"last_name":"Ramadevi","page_name":"BRamadevi","domain_name":"uohyd","created_at":"2014-06-06T13:05:28.731-07:00","display_name":"B Ramadevi","url":"https://uohyd.academia.edu/BRamadevi"},"attachments":[{"id":48540333,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540333/thumbnails/1.jpg","file_name":"s1383-5718_2801_2900178-420160903-31442-1ppzdk6.pdf","download_url":"https://www.academia.edu/attachments/48540333/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Reevaluation_of_the_mutagenic_potential.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540333/s1383-5718_2801_2900178-420160903-31442-1ppzdk6-libre.pdf?1472914971=\u0026response-content-disposition=attachment%3B+filename%3DReevaluation_of_the_mutagenic_potential.pdf\u0026Expires=1732732995\u0026Signature=OmK~bUzYfz01IeohPbgQ9zvwmfnoFmGPIf~UQ9qhY5LkUifDQafDCgVVfX4GWi16aRs8G19Zoy27~wKsAuZYbsJumZyA1jhPUWc9xKi~Ly4b0DED~Lq6KA20DBWg0GAPkMBG4TN-zIDIcsswy28oXavmIOGINHd~XvuPd-JWcdMoOK~jY3uCCJOCt8QmFtJYOvzWxFVpkssqSvTqbqPjuI2OtIiaIB4N2MrGjyUeDouCcAQTe2p9SqvKARVqZtoFhYI8XkK3HtVyfV0xdzqeD5mjsOlYjL1SfYO4yW2M2kPjHIFBxeacBGHyfHI2j12XCZyZ2Gt2glxc5NgD~ed6IA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":5071,"name":"Genetic Toxicology","url":"https://www.academia.edu/Documents/in/Genetic_Toxicology"},{"id":33760,"name":"Environmental Biotechnology","url":"https://www.academia.edu/Documents/in/Environmental_Biotechnology"},{"id":74780,"name":"Mutation","url":"https://www.academia.edu/Documents/in/Mutation"},{"id":83128,"name":"Escherichia coli","url":"https://www.academia.edu/Documents/in/Escherichia_coli"},{"id":84760,"name":"Mice","url":"https://www.academia.edu/Documents/in/Mice"},{"id":102637,"name":"Salmonella Typhimurium","url":"https://www.academia.edu/Documents/in/Salmonella_Typhimurium"},{"id":177876,"name":"Sterilization","url":"https://www.academia.edu/Documents/in/Sterilization"},{"id":268788,"name":"Human health","url":"https://www.academia.edu/Documents/in/Human_health"},{"id":1162913,"name":"Mutagens","url":"https://www.academia.edu/Documents/in/Mutagens"}],"urls":[{"id":3006436,"url":"http://www.sciencedirect.com/science/article/pii/S1383571801001784"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="7278217"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278217/On_link_invariants_and_topological_string_amplitudes"><img alt="Research paper thumbnail of On link invariants and topological string amplitudes" class="work-thumbnail" src="https://attachments.academia-assets.com/48540287/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278217/On_link_invariants_and_topological_string_amplitudes">On link invariants and topological string amplitudes</a></div><div class="wp-workCard_item"><span>Nuclear Physics B</span><span>, 2001</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="bace94cc0e4aaa22c917991be50727a0" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:48540287,&quot;asset_id&quot;:7278217,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/48540287/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278217"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278217"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278217; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=7278217]").text(description); $(".js-view-count[data-work-id=7278217]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 7278217; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='7278217']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 7278217, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "bace94cc0e4aaa22c917991be50727a0" } } $('.js-work-strip[data-work-id=7278217]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":7278217,"title":"On link invariants and topological string amplitudes","translated_title":"","metadata":{"grobid_abstract":"We explicitly show that the new polynomial invariants for knots, upto nine crossings, agree with the Ooguri-Vafa conjecture relating Chern-Simons gauge theory to topological string theory on the resolution of the conifold.","publication_date":{"day":null,"month":null,"year":2001,"errors":{}},"publication_name":"Nuclear Physics B","grobid_abstract_attachment_id":48540287},"translated_abstract":null,"internal_url":"https://www.academia.edu/7278217/On_link_invariants_and_topological_string_amplitudes","translated_internal_url":"","created_at":"2014-06-06T13:14:18.209-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":12709603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":48540287,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540287/thumbnails/1.jpg","file_name":"5531-3.pdf","download_url":"https://www.academia.edu/attachments/48540287/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"On_link_invariants_and_topological_strin.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540287/5531-3-libre.pdf?1472914974=\u0026response-content-disposition=attachment%3B+filename%3DOn_link_invariants_and_topological_strin.pdf\u0026Expires=1732732995\u0026Signature=Jd6V3e3BqeXFZQMdA1ql9HT8~Ifx06ErQl6IltiSPV66g3HJ3jvaJAermjEOTc8BxtGFrWW-uYZGMGq50gBHpyZ7bdBJfvUjlzghM-wi11bUWkRYfulO6c2hAh-xZ0iRxe7gvhEBZF4eqZ4fdBzXFI3YwLf9lHW6en2xN91kE8l8KL1G6ecuN4uxMsg1WoPrPRtvxwSSD9aoIj6FAmIdiNUKYm2kBRXktlpnmlZEIbaFW6yAIaac2J8k8fn5GL8haFUlRSs0PaVNM~s9JuAWMT3IEXZVA1JLso~dZf4GE0VNvM6WbrSrRX~of12s-U-DQ6wkWelqZM-hh9NEqfF~pA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"On_link_invariants_and_topological_string_amplitudes","translated_slug":"","page_count":25,"language":"en","content_type":"Work","owner":{"id":12709603,"first_name":"B","middle_initials":null,"last_name":"Ramadevi","page_name":"BRamadevi","domain_name":"uohyd","created_at":"2014-06-06T13:05:28.731-07:00","display_name":"B Ramadevi","url":"https://uohyd.academia.edu/BRamadevi"},"attachments":[{"id":48540287,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540287/thumbnails/1.jpg","file_name":"5531-3.pdf","download_url":"https://www.academia.edu/attachments/48540287/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"On_link_invariants_and_topological_strin.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540287/5531-3-libre.pdf?1472914974=\u0026response-content-disposition=attachment%3B+filename%3DOn_link_invariants_and_topological_strin.pdf\u0026Expires=1732732995\u0026Signature=Jd6V3e3BqeXFZQMdA1ql9HT8~Ifx06ErQl6IltiSPV66g3HJ3jvaJAermjEOTc8BxtGFrWW-uYZGMGq50gBHpyZ7bdBJfvUjlzghM-wi11bUWkRYfulO6c2hAh-xZ0iRxe7gvhEBZF4eqZ4fdBzXFI3YwLf9lHW6en2xN91kE8l8KL1G6ecuN4uxMsg1WoPrPRtvxwSSD9aoIj6FAmIdiNUKYm2kBRXktlpnmlZEIbaFW6yAIaac2J8k8fn5GL8haFUlRSs0PaVNM~s9JuAWMT3IEXZVA1JLso~dZf4GE0VNvM6WbrSrRX~of12s-U-DQ6wkWelqZM-hh9NEqfF~pA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":318,"name":"Mathematical Physics","url":"https://www.academia.edu/Documents/in/Mathematical_Physics"},{"id":518,"name":"Quantum Physics","url":"https://www.academia.edu/Documents/in/Quantum_Physics"},{"id":108262,"name":"Gauge theory","url":"https://www.academia.edu/Documents/in/Gauge_theory"},{"id":364279,"name":"Chern Simons Theory","url":"https://www.academia.edu/Documents/in/Chern_Simons_Theory"}],"urls":[{"id":3006435,"url":"http://www.sciencedirect.com/science/article/pii/S0550321300007616"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="7278216"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278216/Boosts_Schwarzschild_black_holes_and_absorption_cross_sections_in_M_theory"><img alt="Research paper thumbnail of Boosts, Schwarzschild black holes and absorption cross sections in M-theory" class="work-thumbnail" src="https://attachments.academia-assets.com/48540336/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278216/Boosts_Schwarzschild_black_holes_and_absorption_cross_sections_in_M_theory">Boosts, Schwarzschild black holes and absorption cross sections in M-theory</a></div><div class="wp-workCard_item"><span>Nuclear Physics B</span><span>, 1998</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="c61de52895786582922633888000380d" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:48540336,&quot;asset_id&quot;:7278216,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/48540336/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278216"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278216"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278216; 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We show that the boost has to be performed in the covering space and the boosted coordinate has to be compactified on a circle with a Lorentz contracted radius. Using this fact we show that the transition between Schwarzschild black holes to black p-branes observed recently in M theory is the well-known black hole-black string transition viewed in a boosted frame. In a similar way the correspondence point where an excited string state goes over to a neutral black hole is mapped exactly to the correspondence point for black p-branes. In terms of the p brane quantities the equation of state for an excited string state becomes identical to that of a 3 + 1 dimensional massless gas for all p. Finally, we show how boosts can be used to relate Hawking radiation rates. Using the known microscopic derivation of absorption by extremal 3-branes and near-extremal 5D holes with three large charges we provide a microscopic derivation of absorption of 0-branes by seven and five dimensional Schwarzschild black holes in a certain regime.","publication_date":{"day":null,"month":null,"year":1998,"errors":{}},"publication_name":"Nuclear Physics B","grobid_abstract_attachment_id":48540336},"translated_abstract":null,"internal_url":"https://www.academia.edu/7278216/Boosts_Schwarzschild_black_holes_and_absorption_cross_sections_in_M_theory","translated_internal_url":"","created_at":"2014-06-06T13:14:17.155-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":12709603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":48540336,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540336/thumbnails/1.jpg","file_name":"Boosts_Schwarzschild_black_holes_and_abs20160903-20934-vajpz0.pdf","download_url":"https://www.academia.edu/attachments/48540336/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Boosts_Schwarzschild_black_holes_and_abs.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540336/Boosts_Schwarzschild_black_holes_and_abs20160903-20934-vajpz0-libre.pdf?1472914971=\u0026response-content-disposition=attachment%3B+filename%3DBoosts_Schwarzschild_black_holes_and_abs.pdf\u0026Expires=1732732995\u0026Signature=Si8zoVRlZZTa9jBKitaWzXBWJ4SsuHYxgLEen5~A4tdTJF27xf9YMiU0UHdvnxjdEFnKLsvsznT39w~6q5~KJS0niN496UhJ1iAooo-y1ngeEiTeQBShNhxlNi9~Vrz9AJQS6Pe21dtwRLSbXTLMZKiCNMTzLrhw252IS4i6svwbWhDJP4yclVYLu6tgo-uUurIxJX9kBZKLcMSCOx6zQhjb6zqUePPWpLv2kY4w6cclOEaOun9~S105Xju6MgcbA~DDWNv0-dNc25-ANNbNyzuUMJndmB5QRXCXhhEs1g~1jeUtbXywNrZi1cWVJs9w42KppWk1IztMQBWD6UEjHQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Boosts_Schwarzschild_black_holes_and_absorption_cross_sections_in_M_theory","translated_slug":"","page_count":21,"language":"en","content_type":"Work","owner":{"id":12709603,"first_name":"B","middle_initials":null,"last_name":"Ramadevi","page_name":"BRamadevi","domain_name":"uohyd","created_at":"2014-06-06T13:05:28.731-07:00","display_name":"B Ramadevi","url":"https://uohyd.academia.edu/BRamadevi"},"attachments":[{"id":48540336,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540336/thumbnails/1.jpg","file_name":"Boosts_Schwarzschild_black_holes_and_abs20160903-20934-vajpz0.pdf","download_url":"https://www.academia.edu/attachments/48540336/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Boosts_Schwarzschild_black_holes_and_abs.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540336/Boosts_Schwarzschild_black_holes_and_abs20160903-20934-vajpz0-libre.pdf?1472914971=\u0026response-content-disposition=attachment%3B+filename%3DBoosts_Schwarzschild_black_holes_and_abs.pdf\u0026Expires=1732732995\u0026Signature=Si8zoVRlZZTa9jBKitaWzXBWJ4SsuHYxgLEen5~A4tdTJF27xf9YMiU0UHdvnxjdEFnKLsvsznT39w~6q5~KJS0niN496UhJ1iAooo-y1ngeEiTeQBShNhxlNi9~Vrz9AJQS6Pe21dtwRLSbXTLMZKiCNMTzLrhw252IS4i6svwbWhDJP4yclVYLu6tgo-uUurIxJX9kBZKLcMSCOx6zQhjb6zqUePPWpLv2kY4w6cclOEaOun9~S105Xju6MgcbA~DDWNv0-dNc25-ANNbNyzuUMJndmB5QRXCXhhEs1g~1jeUtbXywNrZi1cWVJs9w42KppWk1IztMQBWD6UEjHQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":318,"name":"Mathematical Physics","url":"https://www.academia.edu/Documents/in/Mathematical_Physics"},{"id":518,"name":"Quantum Physics","url":"https://www.academia.edu/Documents/in/Quantum_Physics"},{"id":19658,"name":"Hawking Radiation","url":"https://www.academia.edu/Documents/in/Hawking_Radiation"},{"id":235060,"name":"Black Hole","url":"https://www.academia.edu/Documents/in/Black_Hole"},{"id":267802,"name":"Dimensional","url":"https://www.academia.edu/Documents/in/Dimensional"},{"id":404000,"name":"Cross Section","url":"https://www.academia.edu/Documents/in/Cross_Section"},{"id":1320599,"name":"Equation of State","url":"https://www.academia.edu/Documents/in/Equation_of_State"}],"urls":[{"id":3006434,"url":"http://www.sciencedirect.com/science/article/pii/S0550321398002296"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="7278215"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278215/U_N_framed_links_three_manifold_invariants_and_topological_strings"><img alt="Research paper thumbnail of U( N) framed links, three-manifold invariants, and topological strings" class="work-thumbnail" src="https://attachments.academia-assets.com/48540304/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278215/U_N_framed_links_three_manifold_invariants_and_topological_strings">U( N) framed links, three-manifold invariants, and topological strings</a></div><div class="wp-workCard_item"><span>Nuclear Physics B</span><span>, 2004</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="279edf7b73b386919eeb1eea755eb76f" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:48540304,&quot;asset_id&quot;:7278215,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/48540304/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278215"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278215"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278215; 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We study the meaning of surgery procedures in the context of topological strings. We obtain U (N ) three-manifold invariants from U (N ) framed link invariants in Chern-Simons theory on S 3 . These three-manifold invariants are proportional to the Chern-Simons partition function on the respective threemanifolds. Using the topological string duality conjecture, we show that the large N expansion of U (N ) Chern-Simons free energies on three-manifolds, obtained from some class of framed links, have a closed string expansion. These expansions resemble the closed string A-model partition functions on Calabi-Yau manifolds with one Kahler parameter. We also determine Gopakumar-Vafa integer coefficients and Gromov-Witten rational coefficients corresponding to Chern-Simons free energies on some three-manifolds.","publication_date":{"day":null,"month":null,"year":2004,"errors":{}},"publication_name":"Nuclear Physics B","grobid_abstract_attachment_id":48540304},"translated_abstract":null,"internal_url":"https://www.academia.edu/7278215/U_N_framed_links_three_manifold_invariants_and_topological_strings","translated_internal_url":"","created_at":"2014-06-06T13:14:16.016-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":12709603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":48540304,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540304/thumbnails/1.jpg","file_name":"0306283.pdf","download_url":"https://www.academia.edu/attachments/48540304/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"U_N_framed_links_three_manifold_invarian.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540304/0306283-libre.pdf?1472914973=\u0026response-content-disposition=attachment%3B+filename%3DU_N_framed_links_three_manifold_invarian.pdf\u0026Expires=1732732995\u0026Signature=Ono0JlmIs96B~DNVsrNUsLdOnHtHm1VrvfP79TmLSTke31ojECpqvgkspTexM3ubxVlKfVZnVQESMgaG43AVnnd~uC5GxTsmSSFmB1yBzFRhR3aK3RvXrTC8zceJkn1zlx5NFk3~qQSPmHWOLMsA42Dor2UfQSM4yLTUlZ4ts3T3r1Of8ysiZKs-rCOFvkvZ4NWhfggAH2fBNSWAY4qLkU5w4iRV-lX3UmJvw~98aVZbU~-WkbLu76Qcu7jrzLcQa7hK24nDMkS4ohxIEgJg76yrcW3EOeJ8IczJ5bynaqDcVZjNnP5aYi4IOOtMEMEp8uR0kXDxgDuVFiT~YDkAoQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"U_N_framed_links_three_manifold_invariants_and_topological_strings","translated_slug":"","page_count":29,"language":"en","content_type":"Work","owner":{"id":12709603,"first_name":"B","middle_initials":null,"last_name":"Ramadevi","page_name":"BRamadevi","domain_name":"uohyd","created_at":"2014-06-06T13:05:28.731-07:00","display_name":"B Ramadevi","url":"https://uohyd.academia.edu/BRamadevi"},"attachments":[{"id":48540304,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540304/thumbnails/1.jpg","file_name":"0306283.pdf","download_url":"https://www.academia.edu/attachments/48540304/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"U_N_framed_links_three_manifold_invarian.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540304/0306283-libre.pdf?1472914973=\u0026response-content-disposition=attachment%3B+filename%3DU_N_framed_links_three_manifold_invarian.pdf\u0026Expires=1732732995\u0026Signature=Ono0JlmIs96B~DNVsrNUsLdOnHtHm1VrvfP79TmLSTke31ojECpqvgkspTexM3ubxVlKfVZnVQESMgaG43AVnnd~uC5GxTsmSSFmB1yBzFRhR3aK3RvXrTC8zceJkn1zlx5NFk3~qQSPmHWOLMsA42Dor2UfQSM4yLTUlZ4ts3T3r1Of8ysiZKs-rCOFvkvZ4NWhfggAH2fBNSWAY4qLkU5w4iRV-lX3UmJvw~98aVZbU~-WkbLu76Qcu7jrzLcQa7hK24nDMkS4ohxIEgJg76yrcW3EOeJ8IczJ5bynaqDcVZjNnP5aYi4IOOtMEMEp8uR0kXDxgDuVFiT~YDkAoQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":318,"name":"Mathematical Physics","url":"https://www.academia.edu/Documents/in/Mathematical_Physics"},{"id":518,"name":"Quantum Physics","url":"https://www.academia.edu/Documents/in/Quantum_Physics"},{"id":216526,"name":"Free Energy","url":"https://www.academia.edu/Documents/in/Free_Energy"},{"id":364279,"name":"Chern Simons Theory","url":"https://www.academia.edu/Documents/in/Chern_Simons_Theory"},{"id":556555,"name":"Partition Function","url":"https://www.academia.edu/Documents/in/Partition_Function"}],"urls":[{"id":3006433,"url":"http://www.sciencedirect.com/science/article/pii/S0550321303009933"}]}, dispatcherData: dispatcherData }); 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> </div><div class="profile--tab_content_container js-tab-pane tab-pane" data-section-id="1503227" id="papers"><div class="js-work-strip profile--work_container" data-work-id="7278224"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278224/Construction_of_Yangian_algebra_through_a_multi_deformation_parameter_dependent_rational_R_matrix"><img alt="Research paper thumbnail of Construction of Yangian algebra through a multi-deformation parameter dependent rational $R$-matrix" class="work-thumbnail" src="https://attachments.academia-assets.com/33888317/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278224/Construction_of_Yangian_algebra_through_a_multi_deformation_parameter_dependent_rational_R_matrix">Construction of Yangian algebra through a multi-deformation parameter dependent rational $R$-matrix</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Yang-Baxterising a braid group representation associated with multideformed version of $GL_{q}(N)...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Yang-Baxterising a braid group representation associated with multideformed version of $GL_{q}(N)$ quantum group and taking the corresponding $q\rightarrow 1$ limit, we obtain a rational $R$-matrix which depends on $\left ( 1+ {N(N-1) \over 2} \right ) $ number of deformation parameters. By using such rational $R$-matrix subsequently we construct a multiparameter dependent extension of $Y(gl_N)$ Yangian algebra and find that this extended algebra leads to a modification of usual asymptotic condition on monodromy matrix $T(\lambda )$, at $ \lambda \rightarrow \infty $ limit. Moreover, it turns out that, there exists a nonlinear realisation of this extended algebra through the generators of original $Y(gl_N)$ algebra. Such realisation interestingly provides a novel $\left ( 1 + { N(N-1) \over 2 } \right ) $ number of deformation parameter dependent coproduct for standard $Y(gl_N)$ algebra.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="cdcbf1fe6b3dbd2d6e2e6951bdef742c" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:33888317,&quot;asset_id&quot;:7278224,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/33888317/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278224"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278224"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278224; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=7278224]").text(description); $(".js-view-count[data-work-id=7278224]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 7278224; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='7278224']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 7278224, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "cdcbf1fe6b3dbd2d6e2e6951bdef742c" } } $('.js-work-strip[data-work-id=7278224]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":7278224,"title":"Construction of Yangian algebra through a multi-deformation parameter dependent rational $R$-matrix","translated_title":"","metadata":{"abstract":"Yang-Baxterising a braid group representation associated with multideformed version of $GL_{q}(N)$ quantum group and taking the corresponding $q\\rightarrow 1$ limit, we obtain a rational $R$-matrix which depends on $\\left ( 1+ {N(N-1) \\over 2} \\right ) $ number of deformation parameters. By using such rational $R$-matrix subsequently we construct a multiparameter dependent extension of $Y(gl_N)$ Yangian algebra and find that this extended algebra leads to a modification of usual asymptotic condition on monodromy matrix $T(\\lambda )$, at $ \\lambda \\rightarrow \\infty $ limit. Moreover, it turns out that, there exists a nonlinear realisation of this extended algebra through the generators of original $Y(gl_N)$ algebra. 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thumbnail of Withanolide induces apoptosis in HL60 leukemia cells via mitochondria mediated cytochrome c release and caspase activation" class="work-thumbnail" src="https://attachments.academia-assets.com/48540310/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278222/Withanolide_induces_apoptosis_in_HL60_leukemia_cells_via_mitochondria_mediated_cytochrome_c_release_and_caspase_activation">Withanolide induces apoptosis in HL60 leukemia cells via mitochondria mediated cytochrome c release and caspase activation</a></div><div class="wp-workCard_item"><span>Chemico-biological Interactions</span><span>, 2007</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="106766bf5041e72c0a7c25ff8c8d1bc4" 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activation","translated_title":"","metadata":{"grobid_abstract":"The present study is on the growth inhibitory effect of Withania somnifera methanolic leaf extract and its active component, withanolide on HL-60 promyelocytic leukemia cells. The decrease in survival rate of HL-60 cells was noted to be associated with a time dependent decrease in the Bcl-2/Bax ratio, leading to up regulation of Bax. Both the crude leaf extract and the active component activated the apoptotic cascade through the cytochrome c release from mitochondria. The activation of caspase 9, caspase 8 and caspase 3 revealed that caspase was a key mediator in the apoptotic pathway. DNA fragmentation analysis revealed typical ladders as early as 12 h indicative of caspase 3 role in the apoptotic pathway. Flow cytometry data demonstrated an increase of sub-G1 peak upon treatment by 51% at 24 h, suggesting the induction of apoptotic cell death in HL-60 cells. (B.S. Lakshmi). reports have demonstrated the anti-tumor activity [2,3], anti-arthritic [4], anti-pyretic and anti-inflammatory [5] activity of this plant. The root extract has shown to have immunomodulatory activity [6], antistress effect [7] and induce iNOS expression [8]. The methanolic root extract of W. somnifera is a rich source of steroidal lactones called withanolides . Similarly the methanolic leaf extracts also include a variety of withanolides [10] and very few studies have investigated the molecular mechanisms of the effect of leaf extracts. These withanolides from leaves are reported to have an antiproliferative activity and possess an inhibitory effect on the cyclooxygenase-2 (COX-2) enzyme .","publication_date":{"day":null,"month":null,"year":2007,"errors":{}},"publication_name":"Chemico-biological 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$a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="7278221"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278221/Multiparametric_and_Colored_Extensions_of_the_Quantum_Group_GLq_N_and_the_Yangian_Algebra_Y_glN_Through_a_Symmetry_Transformation_of_the_Yang_Baxter_Equation"><img alt="Research paper thumbnail of Multiparametric and Colored Extensions of the Quantum Group GLq(N) and the Yangian Algebra Y(glN) Through a Symmetry Transformation of the Yang-Baxter Equation" class="work-thumbnail" src="https://attachments.academia-assets.com/48540340/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278221/Multiparametric_and_Colored_Extensions_of_the_Quantum_Group_GLq_N_and_the_Yangian_Algebra_Y_glN_Through_a_Symmetry_Transformation_of_the_Yang_Baxter_Equation">Multiparametric and Colored Extensions of the Quantum Group GLq(N) and the Yangian Algebra Y(glN) Through a Symmetry Transformation of the Yang-Baxter Equation</a></div><div class="wp-workCard_item"><span>International Journal of Modern Physics A</span><span>, 1997</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Inspired by Reshetikhin&#39;s twisting procedure to obtain multiparametric extensions of a Hopf algeb...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Inspired by Reshetikhin&#39;s twisting procedure to obtain multiparametric extensions of a Hopf algebra, a general &quot;symmetry transformation&quot; of the &quot;particle conserving&quot; R-matrix is found such that the resulting multiparametric R-matrix, with a spectral parameter as well as a color parameter, is also a solution of the Yang-Baxter equation (YBE). The corresponding transformation of the quantum YBE reveals a new relation between the associated quantized algebra and its multiparametric deformation. As applications of this general relation to some particular cases, multiparametric and colored extensions of the quantum group GLq(N) and the Yangian algebra Y(glN) are investigated and their explicit realizations are also discussed. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="7278220"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278220/Position_calibration_methodology_for_scanning_sky_monitor_for_ASTROSAT"><img alt="Research paper thumbnail of Position calibration methodology for scanning sky monitor for ASTROSAT" class="work-thumbnail" src="https://attachments.academia-assets.com/48540296/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278220/Position_calibration_methodology_for_scanning_sky_monitor_for_ASTROSAT">Position calibration methodology for scanning sky monitor for ASTROSAT</a></div><div class="wp-workCard_item"><span>Experimental Astronomy</span><span>, 2011</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Scanning Sky Monitor (SSM) on ASTROSAT is an X-ray sky monitor which has a large Field of View (F...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Scanning Sky Monitor (SSM) on ASTROSAT is an X-ray sky monitor which has a large Field of View (FOV) and scans the sky to detect and locate X-ray transient sources in the energy range 2 to 10 keV. Experiments are carried out to calibrate SSM detectors for position response and to verify the calibration constants derived. In this paper we discuss the methodology of position calibration of proportional counters for SSM and results from various experiments.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="d0d0c4ef4dd86d4db8a522ab1f561452" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:48540296,&quot;asset_id&quot;:7278220,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/48540296/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278220"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278220"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278220; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=7278220]").text(description); $(".js-view-count[data-work-id=7278220]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 7278220; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='7278220']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 7278220, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "d0d0c4ef4dd86d4db8a522ab1f561452" } } $('.js-work-strip[data-work-id=7278220]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":7278220,"title":"Position calibration methodology for scanning sky monitor for ASTROSAT","translated_title":"","metadata":{"abstract":"Scanning Sky Monitor (SSM) on ASTROSAT is an X-ray sky monitor which has a large Field of View (FOV) and scans the sky to detect and locate X-ray transient sources in the energy range 2 to 10 keV. 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Safety issues regarding quinacrine have been raised because it has been shown to intercalate with DNA. Therefore, safety issues need to be resolved by appropriate toxicology studies to support a review for human transcervical use. Such toxicology studies include mutagenicity assays. Here we report an evaluation of the genotoxicity of quinacrine dihydrochloride dihydrate (QH) using a battery of assays. In the bacterial mutagenicity assay, QH was strongly positive in Salmonella typhimurium tester strain TA1537 with and without S9-activation and in S. typhimurium tester strain TA98 with S9-activation; QH was also strongly positive in Escherichia coli WP2 uvrA without S9-activation. QH was not mutagenic in S. typhimurium tester strains TA100 and TA1535 with and without S9-activation. QH was mutagenic in the mouse lymphoma assay in the absence of S9-activation. QH was clastogenic in Chinese hamster ovary (CHO) cells, with and without S9-activation. QH was negative for polyploidy in the same chromosome aberration test. Using a triple intraperitoneal injection treatment protocol in both male and female mice, QH was negative in the in vivo mouse micronucleated erythrocyte (micronucleus) assay. These results confirm that QH is mutagenic and clastogenic in vitro and suggest a potential risk to human health due to QH exposure after intrauterine exposure.","publication_date":{"day":null,"month":null,"year":2001,"errors":{}},"publication_name":"Mutation Research-genetic Toxicology and Environmental Mutagenesis","grobid_abstract_attachment_id":48540333},"translated_abstract":null,"internal_url":"https://www.academia.edu/7278218/Reevaluation_of_the_mutagenic_potential_of_quinacrine_dihydrochloride_dihydrate","translated_internal_url":"","created_at":"2014-06-06T13:14:19.957-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":12709603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":48540333,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540333/thumbnails/1.jpg","file_name":"s1383-5718_2801_2900178-420160903-31442-1ppzdk6.pdf","download_url":"https://www.academia.edu/attachments/48540333/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Reevaluation_of_the_mutagenic_potential.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540333/s1383-5718_2801_2900178-420160903-31442-1ppzdk6-libre.pdf?1472914971=\u0026response-content-disposition=attachment%3B+filename%3DReevaluation_of_the_mutagenic_potential.pdf\u0026Expires=1732732995\u0026Signature=OmK~bUzYfz01IeohPbgQ9zvwmfnoFmGPIf~UQ9qhY5LkUifDQafDCgVVfX4GWi16aRs8G19Zoy27~wKsAuZYbsJumZyA1jhPUWc9xKi~Ly4b0DED~Lq6KA20DBWg0GAPkMBG4TN-zIDIcsswy28oXavmIOGINHd~XvuPd-JWcdMoOK~jY3uCCJOCt8QmFtJYOvzWxFVpkssqSvTqbqPjuI2OtIiaIB4N2MrGjyUeDouCcAQTe2p9SqvKARVqZtoFhYI8XkK3HtVyfV0xdzqeD5mjsOlYjL1SfYO4yW2M2kPjHIFBxeacBGHyfHI2j12XCZyZ2Gt2glxc5NgD~ed6IA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Reevaluation_of_the_mutagenic_potential_of_quinacrine_dihydrochloride_dihydrate","translated_slug":"","page_count":13,"language":"en","content_type":"Work","owner":{"id":12709603,"first_name":"B","middle_initials":null,"last_name":"Ramadevi","page_name":"BRamadevi","domain_name":"uohyd","created_at":"2014-06-06T13:05:28.731-07:00","display_name":"B Ramadevi","url":"https://uohyd.academia.edu/BRamadevi"},"attachments":[{"id":48540333,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540333/thumbnails/1.jpg","file_name":"s1383-5718_2801_2900178-420160903-31442-1ppzdk6.pdf","download_url":"https://www.academia.edu/attachments/48540333/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Reevaluation_of_the_mutagenic_potential.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540333/s1383-5718_2801_2900178-420160903-31442-1ppzdk6-libre.pdf?1472914971=\u0026response-content-disposition=attachment%3B+filename%3DReevaluation_of_the_mutagenic_potential.pdf\u0026Expires=1732732995\u0026Signature=OmK~bUzYfz01IeohPbgQ9zvwmfnoFmGPIf~UQ9qhY5LkUifDQafDCgVVfX4GWi16aRs8G19Zoy27~wKsAuZYbsJumZyA1jhPUWc9xKi~Ly4b0DED~Lq6KA20DBWg0GAPkMBG4TN-zIDIcsswy28oXavmIOGINHd~XvuPd-JWcdMoOK~jY3uCCJOCt8QmFtJYOvzWxFVpkssqSvTqbqPjuI2OtIiaIB4N2MrGjyUeDouCcAQTe2p9SqvKARVqZtoFhYI8XkK3HtVyfV0xdzqeD5mjsOlYjL1SfYO4yW2M2kPjHIFBxeacBGHyfHI2j12XCZyZ2Gt2glxc5NgD~ed6IA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":5071,"name":"Genetic Toxicology","url":"https://www.academia.edu/Documents/in/Genetic_Toxicology"},{"id":33760,"name":"Environmental Biotechnology","url":"https://www.academia.edu/Documents/in/Environmental_Biotechnology"},{"id":74780,"name":"Mutation","url":"https://www.academia.edu/Documents/in/Mutation"},{"id":83128,"name":"Escherichia coli","url":"https://www.academia.edu/Documents/in/Escherichia_coli"},{"id":84760,"name":"Mice","url":"https://www.academia.edu/Documents/in/Mice"},{"id":102637,"name":"Salmonella Typhimurium","url":"https://www.academia.edu/Documents/in/Salmonella_Typhimurium"},{"id":177876,"name":"Sterilization","url":"https://www.academia.edu/Documents/in/Sterilization"},{"id":268788,"name":"Human health","url":"https://www.academia.edu/Documents/in/Human_health"},{"id":1162913,"name":"Mutagens","url":"https://www.academia.edu/Documents/in/Mutagens"}],"urls":[{"id":3006436,"url":"http://www.sciencedirect.com/science/article/pii/S1383571801001784"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="7278217"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278217/On_link_invariants_and_topological_string_amplitudes"><img alt="Research paper thumbnail of On link invariants and topological string amplitudes" class="work-thumbnail" src="https://attachments.academia-assets.com/48540287/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278217/On_link_invariants_and_topological_string_amplitudes">On link invariants and topological string amplitudes</a></div><div class="wp-workCard_item"><span>Nuclear Physics B</span><span>, 2001</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="bace94cc0e4aaa22c917991be50727a0" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:48540287,&quot;asset_id&quot;:7278217,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/48540287/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278217"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278217"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278217; 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We show that the boost has to be performed in the covering space and the boosted coordinate has to be compactified on a circle with a Lorentz contracted radius. Using this fact we show that the transition between Schwarzschild black holes to black p-branes observed recently in M theory is the well-known black hole-black string transition viewed in a boosted frame. In a similar way the correspondence point where an excited string state goes over to a neutral black hole is mapped exactly to the correspondence point for black p-branes. In terms of the p brane quantities the equation of state for an excited string state becomes identical to that of a 3 + 1 dimensional massless gas for all p. Finally, we show how boosts can be used to relate Hawking radiation rates. Using the known microscopic derivation of absorption by extremal 3-branes and near-extremal 5D holes with three large charges we provide a microscopic derivation of absorption of 0-branes by seven and five dimensional Schwarzschild black holes in a certain regime.","publication_date":{"day":null,"month":null,"year":1998,"errors":{}},"publication_name":"Nuclear Physics B","grobid_abstract_attachment_id":48540336},"translated_abstract":null,"internal_url":"https://www.academia.edu/7278216/Boosts_Schwarzschild_black_holes_and_absorption_cross_sections_in_M_theory","translated_internal_url":"","created_at":"2014-06-06T13:14:17.155-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":12709603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":48540336,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540336/thumbnails/1.jpg","file_name":"Boosts_Schwarzschild_black_holes_and_abs20160903-20934-vajpz0.pdf","download_url":"https://www.academia.edu/attachments/48540336/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Boosts_Schwarzschild_black_holes_and_abs.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540336/Boosts_Schwarzschild_black_holes_and_abs20160903-20934-vajpz0-libre.pdf?1472914971=\u0026response-content-disposition=attachment%3B+filename%3DBoosts_Schwarzschild_black_holes_and_abs.pdf\u0026Expires=1732732995\u0026Signature=Si8zoVRlZZTa9jBKitaWzXBWJ4SsuHYxgLEen5~A4tdTJF27xf9YMiU0UHdvnxjdEFnKLsvsznT39w~6q5~KJS0niN496UhJ1iAooo-y1ngeEiTeQBShNhxlNi9~Vrz9AJQS6Pe21dtwRLSbXTLMZKiCNMTzLrhw252IS4i6svwbWhDJP4yclVYLu6tgo-uUurIxJX9kBZKLcMSCOx6zQhjb6zqUePPWpLv2kY4w6cclOEaOun9~S105Xju6MgcbA~DDWNv0-dNc25-ANNbNyzuUMJndmB5QRXCXhhEs1g~1jeUtbXywNrZi1cWVJs9w42KppWk1IztMQBWD6UEjHQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Boosts_Schwarzschild_black_holes_and_absorption_cross_sections_in_M_theory","translated_slug":"","page_count":21,"language":"en","content_type":"Work","owner":{"id":12709603,"first_name":"B","middle_initials":null,"last_name":"Ramadevi","page_name":"BRamadevi","domain_name":"uohyd","created_at":"2014-06-06T13:05:28.731-07:00","display_name":"B Ramadevi","url":"https://uohyd.academia.edu/BRamadevi"},"attachments":[{"id":48540336,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540336/thumbnails/1.jpg","file_name":"Boosts_Schwarzschild_black_holes_and_abs20160903-20934-vajpz0.pdf","download_url":"https://www.academia.edu/attachments/48540336/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Boosts_Schwarzschild_black_holes_and_abs.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540336/Boosts_Schwarzschild_black_holes_and_abs20160903-20934-vajpz0-libre.pdf?1472914971=\u0026response-content-disposition=attachment%3B+filename%3DBoosts_Schwarzschild_black_holes_and_abs.pdf\u0026Expires=1732732995\u0026Signature=Si8zoVRlZZTa9jBKitaWzXBWJ4SsuHYxgLEen5~A4tdTJF27xf9YMiU0UHdvnxjdEFnKLsvsznT39w~6q5~KJS0niN496UhJ1iAooo-y1ngeEiTeQBShNhxlNi9~Vrz9AJQS6Pe21dtwRLSbXTLMZKiCNMTzLrhw252IS4i6svwbWhDJP4yclVYLu6tgo-uUurIxJX9kBZKLcMSCOx6zQhjb6zqUePPWpLv2kY4w6cclOEaOun9~S105Xju6MgcbA~DDWNv0-dNc25-ANNbNyzuUMJndmB5QRXCXhhEs1g~1jeUtbXywNrZi1cWVJs9w42KppWk1IztMQBWD6UEjHQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":318,"name":"Mathematical Physics","url":"https://www.academia.edu/Documents/in/Mathematical_Physics"},{"id":518,"name":"Quantum Physics","url":"https://www.academia.edu/Documents/in/Quantum_Physics"},{"id":19658,"name":"Hawking Radiation","url":"https://www.academia.edu/Documents/in/Hawking_Radiation"},{"id":235060,"name":"Black Hole","url":"https://www.academia.edu/Documents/in/Black_Hole"},{"id":267802,"name":"Dimensional","url":"https://www.academia.edu/Documents/in/Dimensional"},{"id":404000,"name":"Cross Section","url":"https://www.academia.edu/Documents/in/Cross_Section"},{"id":1320599,"name":"Equation of State","url":"https://www.academia.edu/Documents/in/Equation_of_State"}],"urls":[{"id":3006434,"url":"http://www.sciencedirect.com/science/article/pii/S0550321398002296"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="7278215"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/7278215/U_N_framed_links_three_manifold_invariants_and_topological_strings"><img alt="Research paper thumbnail of U( N) framed links, three-manifold invariants, and topological strings" class="work-thumbnail" src="https://attachments.academia-assets.com/48540304/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/7278215/U_N_framed_links_three_manifold_invariants_and_topological_strings">U( N) framed links, three-manifold invariants, and topological strings</a></div><div class="wp-workCard_item"><span>Nuclear Physics B</span><span>, 2004</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="279edf7b73b386919eeb1eea755eb76f" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:48540304,&quot;asset_id&quot;:7278215,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/48540304/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="7278215"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="7278215"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 7278215; 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We study the meaning of surgery procedures in the context of topological strings. We obtain U (N ) three-manifold invariants from U (N ) framed link invariants in Chern-Simons theory on S 3 . These three-manifold invariants are proportional to the Chern-Simons partition function on the respective threemanifolds. Using the topological string duality conjecture, we show that the large N expansion of U (N ) Chern-Simons free energies on three-manifolds, obtained from some class of framed links, have a closed string expansion. These expansions resemble the closed string A-model partition functions on Calabi-Yau manifolds with one Kahler parameter. We also determine Gopakumar-Vafa integer coefficients and Gromov-Witten rational coefficients corresponding to Chern-Simons free energies on some three-manifolds.","publication_date":{"day":null,"month":null,"year":2004,"errors":{}},"publication_name":"Nuclear Physics B","grobid_abstract_attachment_id":48540304},"translated_abstract":null,"internal_url":"https://www.academia.edu/7278215/U_N_framed_links_three_manifold_invariants_and_topological_strings","translated_internal_url":"","created_at":"2014-06-06T13:14:16.016-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":12709603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":48540304,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540304/thumbnails/1.jpg","file_name":"0306283.pdf","download_url":"https://www.academia.edu/attachments/48540304/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"U_N_framed_links_three_manifold_invarian.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540304/0306283-libre.pdf?1472914973=\u0026response-content-disposition=attachment%3B+filename%3DU_N_framed_links_three_manifold_invarian.pdf\u0026Expires=1732732995\u0026Signature=Ono0JlmIs96B~DNVsrNUsLdOnHtHm1VrvfP79TmLSTke31ojECpqvgkspTexM3ubxVlKfVZnVQESMgaG43AVnnd~uC5GxTsmSSFmB1yBzFRhR3aK3RvXrTC8zceJkn1zlx5NFk3~qQSPmHWOLMsA42Dor2UfQSM4yLTUlZ4ts3T3r1Of8ysiZKs-rCOFvkvZ4NWhfggAH2fBNSWAY4qLkU5w4iRV-lX3UmJvw~98aVZbU~-WkbLu76Qcu7jrzLcQa7hK24nDMkS4ohxIEgJg76yrcW3EOeJ8IczJ5bynaqDcVZjNnP5aYi4IOOtMEMEp8uR0kXDxgDuVFiT~YDkAoQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"U_N_framed_links_three_manifold_invariants_and_topological_strings","translated_slug":"","page_count":29,"language":"en","content_type":"Work","owner":{"id":12709603,"first_name":"B","middle_initials":null,"last_name":"Ramadevi","page_name":"BRamadevi","domain_name":"uohyd","created_at":"2014-06-06T13:05:28.731-07:00","display_name":"B Ramadevi","url":"https://uohyd.academia.edu/BRamadevi"},"attachments":[{"id":48540304,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/48540304/thumbnails/1.jpg","file_name":"0306283.pdf","download_url":"https://www.academia.edu/attachments/48540304/download_file?st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&st=MTczMjcyOTM5NSw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"U_N_framed_links_three_manifold_invarian.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/48540304/0306283-libre.pdf?1472914973=\u0026response-content-disposition=attachment%3B+filename%3DU_N_framed_links_three_manifold_invarian.pdf\u0026Expires=1732732995\u0026Signature=Ono0JlmIs96B~DNVsrNUsLdOnHtHm1VrvfP79TmLSTke31ojECpqvgkspTexM3ubxVlKfVZnVQESMgaG43AVnnd~uC5GxTsmSSFmB1yBzFRhR3aK3RvXrTC8zceJkn1zlx5NFk3~qQSPmHWOLMsA42Dor2UfQSM4yLTUlZ4ts3T3r1Of8ysiZKs-rCOFvkvZ4NWhfggAH2fBNSWAY4qLkU5w4iRV-lX3UmJvw~98aVZbU~-WkbLu76Qcu7jrzLcQa7hK24nDMkS4ohxIEgJg76yrcW3EOeJ8IczJ5bynaqDcVZjNnP5aYi4IOOtMEMEp8uR0kXDxgDuVFiT~YDkAoQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":318,"name":"Mathematical Physics","url":"https://www.academia.edu/Documents/in/Mathematical_Physics"},{"id":518,"name":"Quantum Physics","url":"https://www.academia.edu/Documents/in/Quantum_Physics"},{"id":216526,"name":"Free Energy","url":"https://www.academia.edu/Documents/in/Free_Energy"},{"id":364279,"name":"Chern Simons Theory","url":"https://www.academia.edu/Documents/in/Chern_Simons_Theory"},{"id":556555,"name":"Partition Function","url":"https://www.academia.edu/Documents/in/Partition_Function"}],"urls":[{"id":3006433,"url":"http://www.sciencedirect.com/science/article/pii/S0550321303009933"}]}, dispatcherData: dispatcherData }); 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