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About: Permittivity
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A material with high permittivity polarizes more in response to an applied electric field than a material with low permittivity, thereby storing more energy in the material. In electrostatics, the permittivity plays an important role in determining the capacitance of a capacitor. 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letter ε (epsilon), is a measure of the electric polarizability of a dielectric. A material with high permittivity polarizes more in response to an applied electric field than a material with low permittivity, thereby storing more energy in the material. In electrostatics, the permittivity plays an important role in determining the capacitance of a capacitor. In the simplest case, the electric displacement field D resulting from an applied electric field E is . otherwise written as</p> </div> <div class="col-xs-3 col-sm-2"> <a href="#" class="thumbnail"> <img src="http://commons.wikimedia.org/wiki/Special:FilePath/Diel.png?width=300" alt="thumbnail" class="img-fluid" /> </a> </div> </div> </div> </section> <!-- page-header --> <!-- property-table --> <section> <div class="container-xl"> <div class="row"> <div class="table-responsive"> <table class="table table-hover table-sm table-light"> <thead> <tr> <th class="col-xs-3 ">Property</th> <th class="col-xs-9 px-3">Value</th> </tr> </thead> <tbody> <tr class="odd"><td class="col-2"><a class="uri" href="http://dbpedia.org/ontology/abstract"><small>dbo:</small>abstract</a> </td><td class="col-10 text-break"><ul> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="ca" >En electromagnetisme, la permitivitat (ε) d'un medi és la proporció D / E, on D és el desplaçament elèctric en coulombs per metre quadrat (C/m²) i E és la força del camp elèctric en volts per metre (V/m). En el cas comú d'un medi isòtrop, D i E són paral·lels i ε és un escalar, però en un medi anisòtrop, més general, aquest no és el cas i ε és un tensor de rang 2 (causa de birefringència). La permitivitat ve determinada per la tendència d'un material a polaritzar-se per aplicació d'un camp elèctric, anul·lant d'aquesta manera parcialment el camp intern del material. La permitivitat està relacionada amb la susceptibilitat elèctrica, en aquest sentit, a un condensador una alta permitivitat fa que es pugui emmagatzemar la mateixa càrrega elèctrica amb un camp elèctric menor, la qual cosa porta a una major capacitància del condensador. La permitivitat es mesura en farads per metre (F/m). També pot ser definida com una magnitud adimensional permitivitat relativa, o constant dielèctrica, normalitzada segons la permitivitat del buit ε0 = 8,85419 10-12F/m. On s'aplica un camp elèctric corre un corrent elèctric. El corrent total que corre per un medi real està compost de dues parts: un corrent de conducció, i un de desplaçament. El corrent de desplaçament pot ser vist com una resposta elàstica que té el material pel camp elèctric aplicat. A mesura que augmenta el camp elèctric, el corrent de desplaçament s'emmagatzema en el material, i quan el camp elèctric disminueix el material allibera el corrent de desplaçament. Un dielèctric perfecte és un material que mostra només un corrent de desplaçament, que emmagatzema i retorna energia elèctrica con si fos una 'bateria' ideal. La permitivitat ε i la permeabilitat magnètica μ d'un medi determinen, totes dues juntes, la velocitat de la radiació electromagnètica dins aquest medi. In vacuo, això ve donat per on μ0 és la constant magnètica, o permeabilitat de l'espai buit, igual a 4π × 10-7 N·A-2, i c és la velocitat de la llum: 299.792.458 m/s. En alguns medis, per exemple si els corrents de conducció no són menyspreables, la densitat total del corrent és: on , σ és la conductivitat (responsable del corrent de conducció) del medi, i εd és la permitivitat relativa (responsable del corrent de desplaçament). Dins d'aquest formalisme la permitivitat complexa ε* es defineix com: Per els materials reals, tant la part real, com la imaginària de la permitivitat, són funcions més complicades de freqüència ω per tant això porta a la dispersió òptica dels senyals que contenen freqüències múltiples, aquest materials són anomenats dispersius. Aquesta dependència de la freqüència reflecteix el fet que la polarització del material no respon instantàniament a un camp aplicat perquè la resposta ha de ser sempre causal ( ve després del camp aplicat), la funció dielèctrica ε (ω) ha de tenir pols només per ω amb parts imaginàries positives, i ε(ω) per tant satisfà la . Sigui com sigui, en el rang de freqüències reduït que s'estudia més sovint, les constants dielèctriques es poden aproximar com a independents de la freqüència. Per una certa freqüència, la part imaginària de ε condueix a la pèrdua d'absorció, si és negativa, ( en l'esmentada convenció per la freqüència), o al seu augment, si és positiva. (Més generalment, es miren les parts imaginaris dels valors propis del tensor dielèctric anisòtrop.)</span><small> (ca)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="ar" >السماحية أو النفاذية في الفيزياء (Permittivity) هي كمية فيزيائية تصف تأثر مادّة عازلة كهربائية (dielectric material) عند تعرضها لحقل كهربائي ، فالعوازل ذات السماحية الكبيرة تميل إلى تقليص وجود حقل كهربائي. ولذلك يمكن زيادة تخزين كمية من الطاقة في مكثف عن طريق وضع عازل كهربي ذا سماحية عالية بين لوحيه . فتزداد الطاقة المخزونة بازدياد سماحية العازل .</span><small> (ar)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="cs" >Permitivita (absolutní permitivita) je v elektrotechnice fyzikální veličina označovaná obvykle řeckým písmenem ε (epsilon), která vyjadřuje míru odporu při vytváření elektrického pole v určitém přenosovém médiu. Permitivita vyjadřuje schopnost materiálu odolávat elektrickému poli. Jednotka permitivity v soustavě SI je farad na metr (F/m neboli F m−1), v základních jednotkách s4 A2 m−3 kg−1. Může mít skalární i vektorový charakter (jako komplexní číslo).</span><small> (cs)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="de" >Die Permittivität ε (von lat. permittere: erlauben, überlassen, zulassen), auch dielektrische Leitfähigkeit, Dielektrizität, Dielektrizitätskonstante oder dielektrische Funktion genannt, gibt in der Elektrodynamik sowie der Elektrostatik die Polarisationsfähigkeit eines Materials durch elektrische Felder an. Auch dem Vakuum ist eine Permittivität zugewiesen, da sich auch im Vakuum elektrische Felder einstellen oder elektromagnetische Felder ausbreiten können. Es handelt sich um eine Naturkonstante, nämlich die elektrische Feldkonstante . Die Permittivität eines Stoffes wird dann als Vielfaches der Permittivität des Vakuums angegeben: Hierbei ist der Faktor die stoffabhängige Permittivitätszahl (früher relative Permittivität). Sie hängt jedoch nicht nur von der Art des Stoffes ab, sondern unter anderem auch von der Frequenz der wirksamen Felder.</span><small> (de)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="es" >La permitividad eléctrica (llamada también constante dieléctrica para dieléctricos homogéneos) es un parámetro físico de los materiales que describe cuánto son afectados por un campo eléctrico. La información del campo eléctrico está contenida en los vectores E y D, donde E es la intensidad y D es el desplazamiento eléctrico o densidad de flujo eléctrico. Es este último el que cuenta la influencia del campo sobre un material (análogo al vector B del campo magnético el cual es llamado "densidad de flujo magnético" o "inducción magnética" sobre un material). La permitividad eléctrica del vacío es constante y está dada por = 8.8541878176x10-12 C2 / (N·m²). La permitividad está determinada por la tendencia de un material a polarizarse ante la aplicación de un campo eléctrico y de esa forma anular parcialmente el campo interno del material. Está directamente relacionada con la susceptibilidad eléctrica. Por ejemplo, en un condensador una alta permitividad hace que la misma cantidad de carga eléctrica se almacene con un campo eléctrico menor y, por ende, a un potencial menor, llevando a una mayor capacidad del mismo.</span><small> (es)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="fr" >La permittivité, plus précisément permittivité diélectrique, est une propriété physique qui décrit la réponse d'un milieu donné à un champ électrique appliqué. C'est une propriété macroscopique, essentielle de l'électrostatique, ainsi que de l‘électrodynamique des milieux continus. Elle intervient dans de nombreux domaines, notamment dans l’étude de la propagation des ondes électromagnétiques, et en particulier la lumière visible et les ondes utilisées en radiodiffusion. On la retrouve donc en optique, via l'indice de réfraction. Les lois gérant la réfraction et la réflexion de la lumière y font appel.</span><small> (fr)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="ga" >Tomhas ar an oiread a pholaraíonn (a ailíníonn) na móilíní in ábhar faoi iarmhairt réimse leictrigh. Úsáidtear an tsiombail ε uirthi, agus an t-aonad farad in aghaidh an mhéadair (F m-1). Is ionann ceadaíocht an fholúis is 1/(μ0 c2), nuair is é μ0 tréscaoilteacht mhaighnéadach folúis, agus c luas tairiseach forleata solais i bhfolús: mar sin ε0 = 8.854 × 10-12 F m-1, tairiseach uilíoch a thagann san áireamh arís is arís eile sa leictreachas. Maidir le hábhair thréleictreacha, braitheann ε ar chomhdhéanamh an ábhair is na coinníollacha fisiciúla, agus luaitear mar iolraí ar ε0 í. Tugtar an tairiseach tréleictreach ar na hiolraí seo.</span><small> (ga)</small></span></li> <li><span class="literal"><span property="dbo:abstract" lang="en" >In electromagnetism, the absolute permittivity, often simply called permittivity and denoted by the Greek letter ε (epsilon), is a measure of the electric polarizability of a dielectric. A material with high permittivity polarizes more in response to an applied electric field than a material with low permittivity, thereby storing more energy in the material. In electrostatics, the permittivity plays an important role in determining the capacitance of a capacitor. In the simplest case, the electric displacement field D resulting from an applied electric field E is More generally, the permittivity is a thermodynamic function of state. It can depend on the frequency, magnitude, and direction of the applied field. The SI unit for permittivity is farad per meter (F/m). The permittivity is often represented by the relative permittivity εr which is the ratio of the absolute permittivity ε and the vacuum permittivity ε0 . This dimensionless quantity is also often and ambiguously referred to as the permittivity. Another common term encountered for both absolute and relative permittivity is the dielectric constant which has been deprecated in physics and engineering as well as in chemistry. By definition, a perfect vacuum has a relative permittivity of exactly 1 whereas at standard temperature and pressure, air has a relative permittivity of κair ≈ 1.0006. Relative permittivity is directly related to electric susceptibility (χ) by otherwise written as The term "permittivity" was introduced in the 1880s by Oliver Heaviside to complement Thomson's (1872) "permeability". Formerly written as p, the designation with ε has been in common use since the 1950s.</span><small> (en)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="in" >Permitivitas adalah suatu kuantitas fisik yang mengambarkan bagaimana medan listrik memengaruhi dan dipengaruhi oleh suatu medium dielektrik, dan nilainya ditentukan oleh kemampuan bahan dari medium untuk terpolarisasi sebagai respons dari medan tersebut, yang pada akhirnya juga mengurangi medan listrik dalam bahan. Jadi, permittivitas berkaitan dengan kemampuan suatu material untuk menyampaikan atau memperbolehkan (atau permit dalam bahasa Inggris) suatu medan listrik. Dalam ruang hampa atau tanpa adanya medium, permittivitas dilambangkan dengan = 8.85… × 10−12 F/m, sedangkan dalam bahan atau medium, dilambangkan dengan , yang merupakan hasil perkalian nilai permittivitas dalam vakum dengan nilai permittivitas relatif.</span><small> (in)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="ko" >유전율(誘電率, 영어: permittivity) 또는 전매상수는 전하 사이에 전기장이 작용할 때, 그 전하 사이의 매질이 전기장에 미치는 영향을 나타내는 물리적 단위이다. 매질이 저장할 수 있는 전하량으로 볼 수도 있다. 같은 양의 물질이라도 유전율이 더 높으면 더 많은 전하를 저장할 수 있기 때문에, (저장된 전하량이 동일할 때)유전율이 높을수록 전기장의 세기가 감소된다. 그래서 높은 유전율을 가진 물질을 축전기에 넣는 유전체로 사용하면, 축전기의 전기 용량이 커진다. 전자기학에서는 물질에 가해진 전기장 가 얼마나 물질의 구성에 영향을 마치는지 나타내는 정도를 전기변위장(electric displacement field) 로 정의한다. 이 전기변위장 와 유전율과의 관계는 다음과 같다. 유전율 은 매질이 (isotropy)을 가질때에는 스칼라이지만, 그렇지 않은 경우에는 3×3 행렬로 표현된다. 유전율은 실수일 수도, 복소수일 수도 있다. 일반적으로 유전율은 상수값이 아닌데, 이것은 유전율이 매질의 부분, 그 매질에 가해진 전자기장의 주파수, 습도, 온도 등과 같은 여러 요인에 의해 영향을 받기 때문이다. 국제단위계에서 유전율의 단위는 패럿/미터다. 전기변위장 의 단위는 쿨롱/제곱미터 [C/m2]이고, 전기장 의 단위는 볼트/미터 [V/m]다. 전기변위장과 전기장은 전하에 의해 발생하는 같은 현상을 나타낸다. 전기변위장은 전하의 전기 선속을 나타내는 데 유용하고, 전기장은 전기 선속 내의 단위 전하에 작용하는 힘을 측정하는 데 이용한다. 진공의 유전율 는 진공에서 이 둘 사이의 관계를 나타내는 변환값(scale factor)이다. 는 국제단위계로 8.8541878176... ×10−12 [F/m]이다.</span><small> (ko)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="nl" >Permittiviteit is de mogelijkheid van een materiaal om elektrische energie op te slaan in een elektrisch veld. Vroeger werd het aangeduid als de diëlektrische constante van een materiaal of stof. De permittiviteit is een natuurkundige grootheid die beschrijft hoe een elektrisch veld een medium beïnvloedt en erdoor beïnvloed wordt. De relatieve permittiviteit wordt bepaald door het vermogen van een materiaal om te polariseren door toedoen van het aanleggen van een elektrisch veld, waardoor het gedeeltelijk het veld vermindert binnen het materiaal. Het begrip houdt nauw verband met de elektrische susceptibiliteit χ. In een condensator laat een verhoogde permittiviteit toe dat eenzelfde lading wordt opgeslagen met een kleiner elektrisch veld (en dus een lagere spanning, die de capaciteit verhoogt). In het SI-systeem geldt waar de elektrische veldconstante is; Farad per meter (F/m). De relatieve permittiviteit is dimensieloos.</span><small> (nl)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="pl" >Przenikalność elektryczna – wielkość fizyczna charakteryzująca właściwości elektryczne środowiska, oznaczana grecką literą (epsilon). Dla substancji izotropowych jest to wielkość skalarna, równa stosunkowi wartości indukcji pola elektrycznego do wartości natężenia tego pola: W ciałach anizotropowych przenikalność jest tensorem drugiego rzędu (drugiej rangi). Wymiarem przenikalności elektrycznej w układzie SI jest F/m (farad na metr).</span><small> (pl)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="it" >In elettromagnetismo e nella fisica dello stato solido, la permittività elettrica è una grandezza fisica che quantifica la tendenza del materiale a contrastare l'intensità del campo elettrico presente al suo interno.Descrive quindi il comportamento di un materiale in presenza di un campo elettrico. Viene anche comunemente chiamata costante dielettrica.</span><small> (it)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="ja" >誘電率(ゆうでんりつ、英語: permittivity)は物質内で電荷とそれによって与えられる力との関係を示す係数である。電媒定数ともいう。各物質は固有の誘電率をもち、この値は外部から電場を与えたとき物質中の原子(あるいは分子)がどのように応答するか(誘電分極の仕方)によって定まる。</span><small> (ja)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="sv" >Permittivitet är en fysikalisk storhet som beskriver hur ett elektriskt fält påverkar och påverkas av ett elektriskt isolerande material, och är bestämd efter ett materials förmåga att polariseras i förhållande till dess fält, och därför reduceras fältet inuti materialet. Permittivitet betecknas med den grekiska bokstaven epsilon, som kan skrivas på olika sätt, till exempel ε. I Internationella måttenhetssystemet (SI) har permittivitet enheten farad per meter. Det är vanligt att använda permittivitetstalet εr, den dimensionslösa storheten relativ permittivitet, som med ett äldre språkbruk även kallas (relativ) dielektrisk konstant. Man skriver där ε0 är den elektriska konstanten och χ är den elektriska susceptibiliteten. Tomrummet har ingen susceptibilitet och dess permittivitetstal är lika med 1, så att permittiviten för tomrum är lika med den elektriska konstanten ε0 = 8.85…×10−12 F/m. Notationen ε(ω) anger explicit att permittiviteten är beroende på det elektriska fältets frekvens. Om inget annat anges avser ε den statiska permittiviteten. Permittiviteten ingår i sambandet för den elektriska flödestätheten D, som i material inkluderar materialets elektriska polarisation P = ε0χ E Om materialet inte är isotropt eller kubiskt, är den inducerade polarisationen P inte nödvändigtvis parallell med det elektriska vektorfältet E. Både permittivitet och susceptibilitet är i sådana fall inte skalärer utan tensorer.</span><small> (sv)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="pt" >A permissividade (português brasileiro) ou permitividade (português europeu) é uma constante física que descreve como um campo elétrico afeta e é afetado por um meio. A permissividade do vácuo é 8,8541878176×10-12 F/m. A permissividade é determinada pela habilidade de um material de se polarizar em resposta a um campo elétrico aplicado e, dessa forma, cancelar parcialmente o campo dentro do material. Está diretamente relacionado com a susceptibilidade elétrica. Por exemplo, em um capacitor uma alta permissividade do dielétrico faz com que uma mesma quantidade de carga elétrica seja guardada com um campo elétrico menor e, portanto, a um potencial menor, levando a uma maior capacitância do mesmo.</span><small> (pt)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="uk" >Абсолютна діелектрична проникність — розмірнісна фізична характеристика середовища, що в деяких системах величин, зокрема ISQ, задає лінійне співвідношення між напруженістю електричного поля та електричною індукцією. Абсолютна діелектрична проникність дорівнює безрозмірній відносній діелектричній проникності, помноженій на електричну сталу: де — абсолютна діелектрична проникність, — електрична стала, — відносна діелектрична проникність. У системах величин, в яких напруженість електричного поля та електрична індукція мають однакову розмірність, наприклад, у СГСГ, абсолютна діелектрична проникність дорівнює відносній діелектричній проникності, яку називають просто діелектричною проникністю. У загальному випадку абсолютна діелектрична проникність, як і відносна діелектрична проникність, — величина тензорна: , де — електрична індукція, — напруженість електричного поля. Розмірність абсолютної діелектричної проникності збігається з розмірністю електричної сталої. У системі SI це Ф/м.</span><small> (uk)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="ru" >Диэлектри́ческая проница́емость ( и ) — коэффициент, входящий в математическую запись закона Кулона для силы взаимодействия точечных зарядов и , находящихся в однородной изолирующей (диэлектрической) среде на расстоянии друг от друга: а также в уравнение связи вектора электрической индукции с напряжённостью электрического поля: в рассматриваемой среде. Вводятся абсолютная и относительная (r, от лат. relativus [-a, -um] — относительный) проницаемости: где — электрическая постоянная. Cам термин «диэлектрическая проницаемость» применяется и для , и для ; ради краткости, одну из этих величин (в российской литературе чаще , в англоязычной ) переобозначают как (из контекста обычно ясно, о какой проницаемости идёт речь). Величина безразмерна, а по размерности совпадает с (в Международной системе единиц (СИ): фарад на метр, Ф/м). Проницаемость показывает, во сколько раз сила взаимодействия двух электрических зарядов в конкретной среде меньше, чем в вакууме, для которого . Отличие проницаемости от единицы обусловлено эффектом поляризации диэлектрика под действием внешнего электрического поля, в результате которой создаётся внутреннее противоположно направленное поле. В области низких частот значение проницаемости реальных сред , обычно оно лежит в диапазоне 1—100, но для сегнетоэлектриков составляет десятки и сотни тысяч. Как функция частоты электрического поля величина слегка возрастает на участках вне полос или линий поглощения электромагнитного излучения данным материалом, однако вблизи линий или полос резко спадает, из-за чего высокочастотная диэлектрическая проницаемость ниже статической. Имеет место связь проницаемости и показателя преломления вещества: для немагнитной непоглощающей среды Относительная диэлектрическая проницаемость является одним из «электромагнитных параметров» среды, влияющих на распределение компонент вектора напряжённости электромагнитного поля в пространстве и описывающих среду в материальных уравнениях электродинамики (уравнениях Максвелла).</span><small> (ru)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="zh" >在電磁學裏,介電質響應外電場的施加而電極化的衡量,稱為電容率。在非真空中由於介電質被電極化,在物質內部的總電場會減小。電容率關係到介電質傳輸(或容許)電場的能力。電容率衡量電場怎樣影響介電質,怎樣被介電質影響。電容率又稱為「絕對電容率」。 在國際單位制中,電容率的測量單位是法拉每公尺(F/m)。真空的電容率,稱為真空電容率,或「真空介電常數」,標記為。≈8.854187817…×10⁻¹² F/m。</span><small> (zh)</small></span></li> </ul></td></tr><tr class="even"><td class="col-2"><a class="uri" href="http://dbpedia.org/ontology/thumbnail"><small>dbo:</small>thumbnail</a> </td><td class="col-10 text-break"><ul> <li><span class="literal"><a class="uri" rel="dbo:thumbnail" 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تخزين كمية من الطاقة في مكثف عن طريق وضع عازل كهربي ذا سماحية عالية بين لوحيه . فتزداد الطاقة المخزونة بازدياد سماحية العازل .</span><small> (ar)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="cs" >Permitivita (absolutní permitivita) je v elektrotechnice fyzikální veličina označovaná obvykle řeckým písmenem ε (epsilon), která vyjadřuje míru odporu při vytváření elektrického pole v určitém přenosovém médiu. Permitivita vyjadřuje schopnost materiálu odolávat elektrickému poli. Jednotka permitivity v soustavě SI je farad na metr (F/m neboli F m−1), v základních jednotkách s4 A2 m−3 kg−1. Může mít skalární i vektorový charakter (jako komplexní číslo).</span><small> (cs)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="ga" >Tomhas ar an oiread a pholaraíonn (a ailíníonn) na móilíní in ábhar faoi iarmhairt réimse leictrigh. Úsáidtear an tsiombail ε uirthi, agus an t-aonad farad in aghaidh an mhéadair (F m-1). Is ionann ceadaíocht an fholúis is 1/(μ0 c2), nuair is é μ0 tréscaoilteacht mhaighnéadach folúis, agus c luas tairiseach forleata solais i bhfolús: mar sin ε0 = 8.854 × 10-12 F m-1, tairiseach uilíoch a thagann san áireamh arís is arís eile sa leictreachas. Maidir le hábhair thréleictreacha, braitheann ε ar chomhdhéanamh an ábhair is na coinníollacha fisiciúla, agus luaitear mar iolraí ar ε0 í. Tugtar an tairiseach tréleictreach ar na hiolraí seo.</span><small> (ga)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="pl" >Przenikalność elektryczna – wielkość fizyczna charakteryzująca właściwości elektryczne środowiska, oznaczana grecką literą (epsilon). Dla substancji izotropowych jest to wielkość skalarna, równa stosunkowi wartości indukcji pola elektrycznego do wartości natężenia tego pola: W ciałach anizotropowych przenikalność jest tensorem drugiego rzędu (drugiej rangi). Wymiarem przenikalności elektrycznej w układzie SI jest F/m (farad na metr).</span><small> (pl)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="it" >In elettromagnetismo e nella fisica dello stato solido, la permittività elettrica è una grandezza fisica che quantifica la tendenza del materiale a contrastare l'intensità del campo elettrico presente al suo interno.Descrive quindi il comportamento di un materiale in presenza di un campo elettrico. Viene anche comunemente chiamata costante dielettrica.</span><small> (it)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="ja" >誘電率(ゆうでんりつ、英語: permittivity)は物質内で電荷とそれによって与えられる力との関係を示す係数である。電媒定数ともいう。各物質は固有の誘電率をもち、この値は外部から電場を与えたとき物質中の原子(あるいは分子)がどのように応答するか(誘電分極の仕方)によって定まる。</span><small> (ja)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="zh" >在電磁學裏,介電質響應外電場的施加而電極化的衡量,稱為電容率。在非真空中由於介電質被電極化,在物質內部的總電場會減小。電容率關係到介電質傳輸(或容許)電場的能力。電容率衡量電場怎樣影響介電質,怎樣被介電質影響。電容率又稱為「絕對電容率」。 在國際單位制中,電容率的測量單位是法拉每公尺(F/m)。真空的電容率,稱為真空電容率,或「真空介電常數」,標記為。≈8.854187817…×10⁻¹² F/m。</span><small> (zh)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="ca" >En electromagnetisme, la permitivitat (ε) d'un medi és la proporció D / E, on D és el desplaçament elèctric en coulombs per metre quadrat (C/m²) i E és la força del camp elèctric en volts per metre (V/m). En el cas comú d'un medi isòtrop, D i E són paral·lels i ε és un escalar, però en un medi anisòtrop, més general, aquest no és el cas i ε és un tensor de rang 2 (causa de birefringència). La permitivitat ve determinada per la tendència d'un material a polaritzar-se per aplicació d'un camp elèctric, anul·lant d'aquesta manera parcialment el camp intern del material. La permitivitat està relacionada amb la susceptibilitat elèctrica, en aquest sentit, a un condensador una alta permitivitat fa que es pugui emmagatzemar la mateixa càrrega elèctrica amb un camp elèctric menor, la qual cosa port</span><small> (ca)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="de" >Die Permittivität ε (von lat. permittere: erlauben, überlassen, zulassen), auch dielektrische Leitfähigkeit, Dielektrizität, Dielektrizitätskonstante oder dielektrische Funktion genannt, gibt in der Elektrodynamik sowie der Elektrostatik die Polarisationsfähigkeit eines Materials durch elektrische Felder an. Hierbei ist der Faktor die stoffabhängige Permittivitätszahl (früher relative Permittivität). Sie hängt jedoch nicht nur von der Art des Stoffes ab, sondern unter anderem auch von der Frequenz der wirksamen Felder.</span><small> (de)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="es" >La permitividad eléctrica (llamada también constante dieléctrica para dieléctricos homogéneos) es un parámetro físico de los materiales que describe cuánto son afectados por un campo eléctrico. La información del campo eléctrico está contenida en los vectores E y D, donde E es la intensidad y D es el desplazamiento eléctrico o densidad de flujo eléctrico. Es este último el que cuenta la influencia del campo sobre un material (análogo al vector B del campo magnético el cual es llamado "densidad de flujo magnético" o "inducción magnética" sobre un material).</span><small> (es)</small></span></li> <li><span class="literal"><span property="rdfs:comment" lang="en" >In electromagnetism, the absolute permittivity, often simply called permittivity and denoted by the Greek letter ε (epsilon), is a measure of the electric polarizability of a dielectric. A material with high permittivity polarizes more in response to an applied electric field than a material with low permittivity, thereby storing more energy in the material. In electrostatics, the permittivity plays an important role in determining the capacitance of a capacitor. In the simplest case, the electric displacement field D resulting from an applied electric field E is . otherwise written as</span><small> (en)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="fr" >La permittivité, plus précisément permittivité diélectrique, est une propriété physique qui décrit la réponse d'un milieu donné à un champ électrique appliqué. C'est une propriété macroscopique, essentielle de l'électrostatique, ainsi que de l‘électrodynamique des milieux continus. Elle intervient dans de nombreux domaines, notamment dans l’étude de la propagation des ondes électromagnétiques, et en particulier la lumière visible et les ondes utilisées en radiodiffusion.</span><small> (fr)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="in" >Permitivitas adalah suatu kuantitas fisik yang mengambarkan bagaimana medan listrik memengaruhi dan dipengaruhi oleh suatu medium dielektrik, dan nilainya ditentukan oleh kemampuan bahan dari medium untuk terpolarisasi sebagai respons dari medan tersebut, yang pada akhirnya juga mengurangi medan listrik dalam bahan. Jadi, permittivitas berkaitan dengan kemampuan suatu material untuk menyampaikan atau memperbolehkan (atau permit dalam bahasa Inggris) suatu medan listrik.</span><small> (in)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="ko" >유전율(誘電率, 영어: permittivity) 또는 전매상수는 전하 사이에 전기장이 작용할 때, 그 전하 사이의 매질이 전기장에 미치는 영향을 나타내는 물리적 단위이다. 매질이 저장할 수 있는 전하량으로 볼 수도 있다. 같은 양의 물질이라도 유전율이 더 높으면 더 많은 전하를 저장할 수 있기 때문에, (저장된 전하량이 동일할 때)유전율이 높을수록 전기장의 세기가 감소된다. 그래서 높은 유전율을 가진 물질을 축전기에 넣는 유전체로 사용하면, 축전기의 전기 용량이 커진다. 전자기학에서는 물질에 가해진 전기장 가 얼마나 물질의 구성에 영향을 마치는지 나타내는 정도를 전기변위장(electric displacement field) 로 정의한다. 이 전기변위장 와 유전율과의 관계는 다음과 같다. 유전율 은 매질이 (isotropy)을 가질때에는 스칼라이지만, 그렇지 않은 경우에는 3×3 행렬로 표현된다. 유전율은 실수일 수도, 복소수일 수도 있다. 일반적으로 유전율은 상수값이 아닌데, 이것은 유전율이 매질의 부분, 그 매질에 가해진 전자기장의 주파수, 습도, 온도 등과 같은 여러 요인에 의해 영향을 받기 때문이다.</span><small> (ko)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="nl" >Permittiviteit is de mogelijkheid van een materiaal om elektrische energie op te slaan in een elektrisch veld. Vroeger werd het aangeduid als de diëlektrische constante van een materiaal of stof. De permittiviteit is een natuurkundige grootheid die beschrijft hoe een elektrisch veld een medium beïnvloedt en erdoor beïnvloed wordt. waar de elektrische veldconstante is; Farad per meter (F/m). De relatieve permittiviteit is dimensieloos.</span><small> (nl)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="pt" >A permissividade (português brasileiro) ou permitividade (português europeu) é uma constante física que descreve como um campo elétrico afeta e é afetado por um meio. A permissividade do vácuo é 8,8541878176×10-12 F/m.</span><small> (pt)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="sv" >Permittivitet är en fysikalisk storhet som beskriver hur ett elektriskt fält påverkar och påverkas av ett elektriskt isolerande material, och är bestämd efter ett materials förmåga att polariseras i förhållande till dess fält, och därför reduceras fältet inuti materialet. där ε0 är den elektriska konstanten och χ är den elektriska susceptibiliteten. Tomrummet har ingen susceptibilitet och dess permittivitetstal är lika med 1, så att permittiviten för tomrum är lika med den elektriska konstanten ε0 = 8.85…×10−12 F/m.</span><small> (sv)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="ru" >Диэлектри́ческая проница́емость ( и ) — коэффициент, входящий в математическую запись закона Кулона для силы взаимодействия точечных зарядов и , находящихся в однородной изолирующей (диэлектрической) среде на расстоянии друг от друга: а также в уравнение связи вектора электрической индукции с напряжённостью электрического поля: в рассматриваемой среде. Вводятся абсолютная и относительная (r, от лат. relativus [-a, -um] — относительный) проницаемости: где — электрическая постоянная.</span><small> (ru)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="uk" >Абсолютна діелектрична проникність — розмірнісна фізична характеристика середовища, що в деяких системах величин, зокрема ISQ, задає лінійне співвідношення між напруженістю електричного поля та електричною індукцією. Абсолютна діелектрична проникність дорівнює безрозмірній відносній діелектричній проникності, помноженій на електричну сталу: де — абсолютна діелектрична проникність, — електрична стала, — відносна діелектрична проникність. У загальному випадку абсолютна діелектрична проникність, як і відносна діелектрична проникність, — величина тензорна: ,</span><small> (uk)</small></span></li> </ul></td></tr><tr class="even"><td class="col-2"><a class="uri" href="http://www.w3.org/2000/01/rdf-schema#label"><small>rdfs:</small>label</a> </td><td class="col-10 text-break"><ul> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="ar" >سماحية</span><small> (ar)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="ca" >Permitivitat</span><small> (ca)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="cs" >Permitivita</span><small> (cs)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="de" >Permittivität</span><small> (de)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="es" >Permitividad</span><small> (es)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="fr" >Permittivité</span><small> (fr)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="ga" >Ceadaíocht</span><small> (ga)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="in" >Permitivitas</span><small> (in)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="it" >Permittività elettrica</span><small> (it)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="ko" >유전율</span><small> (ko)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="ja" >誘電率</span><small> (ja)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="nl" >Permittiviteit</span><small> (nl)</small></span></li> <li><span class="literal"><span property="rdfs:label" lang="en" >Permittivity</span><small> (en)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="pl" >Przenikalność elektryczna</span><small> (pl)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="ru" >Диэлектрическая проницаемость</span><small> (ru)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="pt" >Permissividade</span><small> (pt)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="sv" >Permittivitet</span><small> (sv)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="zh" >电容率</span><small> (zh)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="uk" >Абсолютна діелектрична проникність</span><small> 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