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بوزونات دبليو وزد Bosons W i Z W και Z μποζόνια W and Z bosons W及Z玻色子 W- и Z-бозоны W- і Z-бозони W eta Z bosoi Boson W a Z Bosoni W e Z Bosones W y Z Bósons W e Z Boson W dan Z W와 Z보손 Bosons W et Z W och Z bosoner ウィークボソン
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I bosoni W e Z sono i bosoni di gauge della interazione debole. In quanto bosoni di gauge dotati di spin pari a 1, appartengono alla classe dei bosoni vettori. Vengono definiti anche bosoni vettori intermedi e astenoni. Boson W dan Z secara bersama-sama dikenal sebagai boson vektor menengah atau yang lebih lemah atau lebih umum. Partikel-partikel elementer ini memediasi interaksi yang lemah. Simbol masing-masing : W + , W - , (Z 0) juga termasuk, W ±. Les bosons W et Z, regroupant les deux bosons W (W+ et W−, chargés électriquement) et le boson Z (neutre), sont des particules élémentaires. Ce sont les bosons de jauge de l'interaction faible. * Portail de la physique Em física de partículas, os bósons W e Z são que juntos são conhecidos como bósons fracos ou mais geralmente como bósons vetoriais intermediários. Essas partículas elementares medeiam a interação fraca; os respectivos símbolos são W+, W−, e Z0. Os bósons W± têm uma carga elétrica positiva ou negativa de 1 carga elementar e são as antipartículas um do outro. O bóson Z0 é eletricamente neutro e . Cada uma das três partículas tem spin igual a 1. Os bósons W± têm momento magnético, enquanto que o Z0 não tem. Todas essas três partículas têm um tempo de vida muito curto, com meia-vida de cerca de 3×10−25 s. Sua descoberta experimental foi fundamental para estabelecer o que hoje é chamado de Modelo Padrão da física de partículas . Los bosones W y Z son las partículas mediadoras de la interacción nuclear débil, una de las cuatro interacciones fundamentales de la naturaleza. Son dos tipos de partículas fundamentales, muy masivas, que se encargan en general de cambiar el sabor de otras partículas, los leptones y los quarks. In particle physics, the W and Z bosons are vector bosons that are together known as the weak bosons or more generally as the intermediate vector bosons. These elementary particles mediate the weak interaction; the respective symbols are W+, W−, and Z0. The W± bosons have either a positive or negative electric charge of 1 elementary charge and are each other's antiparticles. The Z0 boson is electrically neutral and is its own antiparticle. The three particles each have a spin of 1. The W± bosons have a magnetic moment, but the Z0 has none. All three of these particles are very short-lived, with a half-life of about 3×10−25 s. Their experimental discovery was pivotal in establishing what is now called the Standard Model of particle physics. W- и Z-бозо́ны — фундаментальные частицы, переносчики слабого взаимодействия. Их открытие (ЦЕРН, 1983) считается одним из главнейших успехов Стандартной модели физики элементарных частиц. W-частица названа по первой букве названия взаимодействия — слабое (Weak) взаимодействие. Z-частица получила такое имя, поскольку Z-бозон имеет нулевой (Zero) электрический заряд. ウィークボソン (weak boson) は素粒子物理学において、弱い相互作用を媒介する素粒子である。弱ボソンとも言う。ウィークボソンはスピン1のベクトルボソンで、WボソンとZボソンの二種類が存在する。Wボソンは陽子の約80倍、Zボソンは約90倍と他の素粒子に比べて大きな質量をもち、ごく短時間のうちに別の粒子に崩壊してしまうという特徴を持つ。Wボソンは電荷 ±1 (W+,W−)をもち、両者は互いに反粒子の関係にある。Zボソンは電荷 0 で、反粒子は自分自身である。 1968年に理論で存在が予言され、1983年に欧州合同原子核研究所にてその存在が確認された。 Στη φυσική, τα W και Z μποζόνια είναι τα στοιχειώδη σωμάτια που μεταδίδουν την ασθενή αλληλεπίδραση. Η ανακάλυψή τους στο CERN το 1983 αντιμετωπίστηκε ως μια σπουδαία επιτυχία του καθιερωμένου μοντέλου της σωματιδιακής φυσικής. Το σωμάτιο W ονομάστηκε έτσι από την ασθενή (weak) πυρηνική δύναμη. Το σωμάτιο Z πήρε το όνομά του με χιουμοριστικό τρόπο, καθώς θεωρούνταν το τελευταίο σωματίδιο που έμενε να ανακαλυφθεί. Μια άλλη εξήγηση έγκειται στο ότι το σωμάτιο Ζ πήρε το όνομά του από το γεγονός ότι έχει μηδενικό (zero) ηλεκτρικό φορτίο. W och Z bosonerna är de elementarpartiklar som tillsammans bär den svaga växelverkan. W-bosonen kan ha en positiv eller negativ laddning av 1 elementarladdning och de är varandras antipartikel, därav W+ och W−. Z-bosonen är en neutral partikel som är sin egen antipartikel. Dessa tre partiklarna har en spinn av 1 och har väldigt korta livslängder, kring 3×10−25 s. När neutrinos interagerar med dessa bosoner sprids de, detta sker där partikeln har en oförändrad rörelse, via Z-bosonen och oelastiskt, där rörelsen påverkas, via W-bosonen. W eta Z bosoiak elkarreragin nuklear ahularen partikula bitartekariak dira, naturako lau bat. Masa handiko hiru partikula mota dira, oro har beste partikula batzuen (leptoiak eta quarkak) zaporea aldatzeaz arduratzen direnak. Bosony W a Z jsou elementární částice, které zprostředkovávají slabou (výměnnou) interakci v atomovém jádře a v reakcích elementárních částic. Byly objeveny v CERNu roku 1983 a jsou považovány za hlavní úspěch teorie Standardního modelu fyziky částic. Jméno částice W vychází z anglického slova „weak“, což znamená „slabý“ a označuje slabou interakci. Název Z částice pochází z domněnky, že to bude poslední částice, kterou je nutné objevit. Alternativní vysvětlení říká, že název je odvozený z toho, že má nulový elektrický náboj (Z jako „zero“, česky „nula“). En física, els bosons W i Z són partícules elementals que produeixen la interacció de la força nuclear feble. Van ser descoberts en el CERN, l'any 1983, la qual cosa fou considerada un gran èxit del model estàndard de la física de partícules. La partícula W va ser anomenada així a causa del nom d'aquesta força en anglès (weak). La partícula Z fou anomenada d'aquesta manera per una broma segons la qual es deia que aquesta era la darrera partícula que es necessitava descobrir. Segons una altra explicació, el nom de la partícula Z deriva del fet de la seva càrrega elèctrica zero. 在物理學中,W及Z玻色子(boson)是負責傳遞弱核力的基本粒子。它們是1983年在歐洲核子研究組織發現的,被認為是粒子物理標準模型的一大勝利。 W玻色子是因弱核力的“弱”(Weak)字而命名的。而Z玻色子則因是“最後一個要發現的粒子”而名。另一個說法是因Z玻色子有零(Zero)電荷而得名。 بوزونات دبليو وزد أو البوزوناتُ الواويَّة والعَينيَّة أو بوزون Z وبوزون W في الفيزياء (بالإنجليزية: Z boson ، W boson)‏ هي جسيمات أولية تتوسط التآثر الضعيف. اعتبر اكتشاف هذه الجسيمات نجاحا كبيرا لنظرية النموذج العياري لفيزياء الجسيمات. سمي الجسيم دبليو من الحرف الأول لكلمة weak من القوة النووية الضعيفة (بالإنجليزية: weak nuclear force)‏ أما الجسيم زد سمي اعتباطا زد الحرف الأخير في الأبجدية اللاتينية لأنه اعتبر آخر جسيم يحتاج للاكتشاف. وهناك تفسير آخر للتسمية Z التي تأتي من كلمة صفر (بالإنجليزية: zero)‏ لأنه لا يحمل شحنة كهربائية (أي شحنة صفر) . 입자 물리학의 표준 모형에서 W보손과 Z보손은 약한 상호작용을 매개하는 게이지 보손이자 기본입자다. 둘 다 벡터 입자 (스핀 1)다. W보손은 ±1의 전하를 갖고, Z보손은 전하를 갖지 않는다. W- і Z-бозони — елементарні частинки, що переносять слабку взаємодію. Їх відкриття 1983 року в ЦЕРНі вважають одним з найголовніших успіхів Стандартної моделі фізики елементарних частинок. W-частинку названо за першою літерою англійської назви слабкої взаємодії (Weak). Іноді напівжартома кажуть, що Z-частинка отримала таку назву, оскільки мала б стати останньою частинкою, яку взагалі потрібно відкрити. (Z — остання буква латинського алфавіту). Інше пояснення полягає в тому, що назва походить від того факту, що Z-бозон має нульовий (Zero) електричний заряд.
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In particle physics, the W and Z bosons are vector bosons that are together known as the weak bosons or more generally as the intermediate vector bosons. These elementary particles mediate the weak interaction; the respective symbols are W+, W−, and Z0. The W± bosons have either a positive or negative electric charge of 1 elementary charge and are each other's antiparticles. The Z0 boson is electrically neutral and is its own antiparticle. The three particles each have a spin of 1. The W± bosons have a magnetic moment, but the Z0 has none. All three of these particles are very short-lived, with a half-life of about 3×10−25 s. Their experimental discovery was pivotal in establishing what is now called the Standard Model of particle physics. The W bosons are named after the weak force. The physicist Steven Weinberg named the additional particle the "Z particle", and later gave the explanation that it was the last additional particle needed by the model. The W bosons had already been named, and the Z bosons were named for having zero electric charge. The two W bosons are verified mediators of neutrino absorption and emission. During these processes, the W± boson charge induces electron or positron emission or absorption, thus causing nuclear transmutation. The Z boson mediates the transfer of momentum, spin and energy when neutrinos scatter elastically from matter (a process which conserves charge). Such behavior is almost as common as inelastic neutrino interactions and may be observed in bubble chambers upon irradiation with neutrino beams. The Z boson is not involved in the absorption or emission of electrons or positrons. Whenever an electron is observed as a new free particle, suddenly moving with kinetic energy, it is inferred to be a result of a neutrino interacting with the electron (with the momentum transfer via the Z boson) since this behavior happens more often when the neutrino beam is present. In this process, the neutrino simply strikes the electron (via exchange of a boson) and then scatters away from it, transferring some of the neutrino's momentum to the electron. 입자 물리학의 표준 모형에서 W보손과 Z보손은 약한 상호작용을 매개하는 게이지 보손이자 기본입자다. 둘 다 벡터 입자 (스핀 1)다. W보손은 ±1의 전하를 갖고, Z보손은 전하를 갖지 않는다. W- і Z-бозони — елементарні частинки, що переносять слабку взаємодію. Їх відкриття 1983 року в ЦЕРНі вважають одним з найголовніших успіхів Стандартної моделі фізики елементарних частинок. W-частинку названо за першою літерою англійської назви слабкої взаємодії (Weak). Іноді напівжартома кажуть, що Z-частинка отримала таку назву, оскільки мала б стати останньою частинкою, яку взагалі потрібно відкрити. (Z — остання буква латинського алфавіту). Інше пояснення полягає в тому, що назва походить від того факту, що Z-бозон має нульовий (Zero) електричний заряд. Στη φυσική, τα W και Z μποζόνια είναι τα στοιχειώδη σωμάτια που μεταδίδουν την ασθενή αλληλεπίδραση. Η ανακάλυψή τους στο CERN το 1983 αντιμετωπίστηκε ως μια σπουδαία επιτυχία του καθιερωμένου μοντέλου της σωματιδιακής φυσικής. Το σωμάτιο W ονομάστηκε έτσι από την ασθενή (weak) πυρηνική δύναμη. Το σωμάτιο Z πήρε το όνομά του με χιουμοριστικό τρόπο, καθώς θεωρούνταν το τελευταίο σωματίδιο που έμενε να ανακαλυφθεί. Μια άλλη εξήγηση έγκειται στο ότι το σωμάτιο Ζ πήρε το όνομά του από το γεγονός ότι έχει μηδενικό (zero) ηλεκτρικό φορτίο. Boson W dan Z secara bersama-sama dikenal sebagai boson vektor menengah atau yang lebih lemah atau lebih umum. Partikel-partikel elementer ini memediasi interaksi yang lemah. Simbol masing-masing : W + , W - , (Z 0) juga termasuk, W ±. Boson memiliki muatan listrik positif atau negatif 1 muatan adalah elementer dan merupakan antipartikelnya masing-masing. Z 0 boson netral secara listrik dan anti partikelnya sendiri. Tiga partikel memiliki putaran 1. W ± boson memiliki suatu kesamaan, tetapi Z 0 tidak punya. Ketiga partikel ini berumur pendek, dengan waktu paruh sekitar 3 × 10 −25 s. Penemuan eksperimental mereka melibatkan apa yang sekarang dikenal sebagai Model Standar fisika partikel. 在物理學中,W及Z玻色子(boson)是負責傳遞弱核力的基本粒子。它們是1983年在歐洲核子研究組織發現的,被認為是粒子物理標準模型的一大勝利。 W玻色子是因弱核力的“弱”(Weak)字而命名的。而Z玻色子則因是“最後一個要發現的粒子”而名。另一個說法是因Z玻色子有零(Zero)電荷而得名。 I bosoni W e Z sono i bosoni di gauge della interazione debole. In quanto bosoni di gauge dotati di spin pari a 1, appartengono alla classe dei bosoni vettori. Vengono definiti anche bosoni vettori intermedi e astenoni. ウィークボソン (weak boson) は素粒子物理学において、弱い相互作用を媒介する素粒子である。弱ボソンとも言う。ウィークボソンはスピン1のベクトルボソンで、WボソンとZボソンの二種類が存在する。Wボソンは陽子の約80倍、Zボソンは約90倍と他の素粒子に比べて大きな質量をもち、ごく短時間のうちに別の粒子に崩壊してしまうという特徴を持つ。Wボソンは電荷 ±1 (W+,W−)をもち、両者は互いに反粒子の関係にある。Zボソンは電荷 0 で、反粒子は自分自身である。 1968年に理論で存在が予言され、1983年に欧州合同原子核研究所にてその存在が確認された。 Los bosones W y Z son las partículas mediadoras de la interacción nuclear débil, una de las cuatro interacciones fundamentales de la naturaleza. Son dos tipos de partículas fundamentales, muy masivas, que se encargan en general de cambiar el sabor de otras partículas, los leptones y los quarks. Fueron descubiertas en el CERN, en 1983; aunque su existencia y características generales habían sido predichas mucho antes. El bosón W recibe ese nombre de la palabra inglesa weak, ‘débil’, por la interacción débil a la que caracteriza. El bosón Z puede haber recibido ese nombre por ser el último de los tres en descubrirse, o tal vez por tener carga eléctrica cero (zero, en inglés). ​ En español también se suelen conocer como «bosones intermedios». Bosony W a Z jsou elementární částice, které zprostředkovávají slabou (výměnnou) interakci v atomovém jádře a v reakcích elementárních částic. Byly objeveny v CERNu roku 1983 a jsou považovány za hlavní úspěch teorie Standardního modelu fyziky částic. Jméno částice W vychází z anglického slova „weak“, což znamená „slabý“ a označuje slabou interakci. Název Z částice pochází z domněnky, že to bude poslední částice, kterou je nutné objevit. Alternativní vysvětlení říká, že název je odvozený z toho, že má nulový elektrický náboj (Z jako „zero“, česky „nula“). W- и Z-бозо́ны — фундаментальные частицы, переносчики слабого взаимодействия. Их открытие (ЦЕРН, 1983) считается одним из главнейших успехов Стандартной модели физики элементарных частиц. W-частица названа по первой букве названия взаимодействия — слабое (Weak) взаимодействие. Z-частица получила такое имя, поскольку Z-бозон имеет нулевой (Zero) электрический заряд. Em física de partículas, os bósons W e Z são que juntos são conhecidos como bósons fracos ou mais geralmente como bósons vetoriais intermediários. Essas partículas elementares medeiam a interação fraca; os respectivos símbolos são W+, W−, e Z0. Os bósons W± têm uma carga elétrica positiva ou negativa de 1 carga elementar e são as antipartículas um do outro. O bóson Z0 é eletricamente neutro e . Cada uma das três partículas tem spin igual a 1. Os bósons W± têm momento magnético, enquanto que o Z0 não tem. Todas essas três partículas têm um tempo de vida muito curto, com meia-vida de cerca de 3×10−25 s. Sua descoberta experimental foi fundamental para estabelecer o que hoje é chamado de Modelo Padrão da física de partículas . Os bósons W são assim nomeados devido à força fraca. O físico Steven Weinberg chamou a partícula adicional de "partícula Z", e mais tarde deu a explicação de que era a última partícula adicional necessária para o modelo. Os bósons W já haviam sido nomeados, e os bósons Z foram nomeados por terem carga elétrica zero. Os dois bósons W são os mediadores da absorção e emissão de neutrinos . Durante esses processos, a carga do bóson W± induz a emissão ou absorção de elétrons ou pósitrons, causando assim a transmutação nuclear . O bóson Z medeia a transferência de momento, spin e energia quando os neutrinos se espalham elasticamente na matéria (um processo que conserva carga). Tal comportamento é quase tão comum quanto as interações inelásticas de neutrinos e pode ser observado em câmaras de bolhas sob irradiação com feixes de neutrinos. O bóson Z não está envolvido na absorção ou emissão de elétrons ou pósitrons. Sempre que um elétron é observado como uma nova partícula livre, movendo-se repentinamente com energia cinética, infere-se que é resultado de um neutrino interagindo com o elétron (com a transferência de momento via o bóson Z), uma vez que esse comportamento ocorre com mais frequência quando o feixe de neutrinos está presente. Nesse processo, o neutrino simplesmente atinge o elétron (pela troca de um bóson) e depois se espalha para longe dele, transferindo parte do momento do neutrino para o elétron. W eta Z bosoiak elkarreragin nuklear ahularen partikula bitartekariak dira, naturako lau bat. Masa handiko hiru partikula mota dira, oro har beste partikula batzuen (leptoiak eta quarkak) zaporea aldatzeaz arduratzen direnak. CERNean aurkituak izan ziren 1983an, euren existentzia eta ezaugarri orokorrak askoz lehenago aurresanak izan ziren arren. W bosoiak izen hau ingelesezko weak hitzagatik jasotzen du, bereizten duen elkarreragin ahulagatik. Z bosoiak bere izena, aurkitua izan zen azkena izanagatik jasoko zuen, edo "zero" karga elektrikoa izateagatik agian. Tarteko bosoi bezala ere ezagutzen dira. Les bosons W et Z, regroupant les deux bosons W (W+ et W−, chargés électriquement) et le boson Z (neutre), sont des particules élémentaires. Ce sont les bosons de jauge de l'interaction faible. * Portail de la physique بوزونات دبليو وزد أو البوزوناتُ الواويَّة والعَينيَّة أو بوزون Z وبوزون W في الفيزياء (بالإنجليزية: Z boson ، W boson)‏ هي جسيمات أولية تتوسط التآثر الضعيف. اعتبر اكتشاف هذه الجسيمات نجاحا كبيرا لنظرية النموذج العياري لفيزياء الجسيمات. سمي الجسيم دبليو من الحرف الأول لكلمة weak من القوة النووية الضعيفة (بالإنجليزية: weak nuclear force)‏ أما الجسيم زد سمي اعتباطا زد الحرف الأخير في الأبجدية اللاتينية لأنه اعتبر آخر جسيم يحتاج للاكتشاف. وهناك تفسير آخر للتسمية Z التي تأتي من كلمة صفر (بالإنجليزية: zero)‏ لأنه لا يحمل شحنة كهربائية (أي شحنة صفر) . W och Z bosonerna är de elementarpartiklar som tillsammans bär den svaga växelverkan. W-bosonen kan ha en positiv eller negativ laddning av 1 elementarladdning och de är varandras antipartikel, därav W+ och W−. Z-bosonen är en neutral partikel som är sin egen antipartikel. Dessa tre partiklarna har en spinn av 1 och har väldigt korta livslängder, kring 3×10−25 s. När neutrinos interagerar med dessa bosoner sprids de, detta sker där partikeln har en oförändrad rörelse, via Z-bosonen och oelastiskt, där rörelsen påverkas, via W-bosonen. En física, els bosons W i Z són partícules elementals que produeixen la interacció de la força nuclear feble. Van ser descoberts en el CERN, l'any 1983, la qual cosa fou considerada un gran èxit del model estàndard de la física de partícules. La partícula W va ser anomenada així a causa del nom d'aquesta força en anglès (weak). La partícula Z fou anomenada d'aquesta manera per una broma segons la qual es deia que aquesta era la darrera partícula que es necessitava descobrir. Segons una altra explicació, el nom de la partícula Z deriva del fet de la seva càrrega elèctrica zero.
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