W Z Ahmed - definição. O que é W Z Ahmed. Significado, conceito
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O que (quem) é W Z Ahmed - definição

POLISH ASTRONOMER
Wieslaw Wisniewski; Wiesław Wiśniewski; Wieslaw Z. Wisniewski; W. Z. Wiśniewski; W. Z. Wisniewski; W. Wisniewski

W. Z. Ahmed         
PAKISTANI FILM-MAKER
Wahid-ud-din Zia-ud-din Ahmed; W.Z. Ahmed
Wahiduddin Ziauddin Ahmed (1916 – 15 April 2007) was a Pakistani filmmaker, known primarily for his work in the 1940s. After the partition of India, Ahmed continued to make movies in Pakistan but was able to make only two films.
W particle         
  • W boson-}} boson
  • The [[Gargamelle]] [[bubble chamber]], now exhibited at CERN
  • W boson}} bosons. This is one of the leading terms contributing to neutral [[Kaon]] oscillation.
MASSIVE GAUGE BOSONS THAT MEDIATE THE WEAK NUCLEAR INTERACTION
W particle; Z particle; Z boson; Weakon; Z Particle; Weak gauge boson; W and Z particles; W-boson; W-Boson; W-Particle; Z-Boson; Z-Particle; Z-boson; W-particle; Z-particle; Intermediate vector boson; Intermediate Vector Boson; Weak boson; Z particles; W particles; W+; W-; Weak Gauge Bosons; W boson; Z-zero; Z naught; W and Z Bosons; W Plus; W Minus; Z Zero; W Plus Boson; W Minus Boson; Z Zero Boson; W-Plus; W & Z bosons; W-plus; W-minus; Weak bosons; W Boson; W-Minus; The W and Z Particles; Z-naught; Z bosons; Zero boson; W and Z boson; W and Z intermediate bosons; Weak intermediate bosons; W bosons; W+ boson; W− boson; W−; W- boson
¦ noun Physics a heavy charged elementary particle considered to transmit the weak interaction between other particles.
Origin
W, the initial letter of weak.
W boson         
  • W boson-}} boson
  • The [[Gargamelle]] [[bubble chamber]], now exhibited at CERN
  • W boson}} bosons. This is one of the leading terms contributing to neutral [[Kaon]] oscillation.
MASSIVE GAUGE BOSONS THAT MEDIATE THE WEAK NUCLEAR INTERACTION
W particle; Z particle; Z boson; Weakon; Z Particle; Weak gauge boson; W and Z particles; W-boson; W-Boson; W-Particle; Z-Boson; Z-Particle; Z-boson; W-particle; Z-particle; Intermediate vector boson; Intermediate Vector Boson; Weak boson; Z particles; W particles; W+; W-; Weak Gauge Bosons; W boson; Z-zero; Z naught; W and Z Bosons; W Plus; W Minus; Z Zero; W Plus Boson; W Minus Boson; Z Zero Boson; W-Plus; W & Z bosons; W-plus; W-minus; Weak bosons; W Boson; W-Minus; The W and Z Particles; Z-naught; Z bosons; Zero boson; W and Z boson; W and Z intermediate bosons; Weak intermediate bosons; W bosons; W+ boson; W− boson; W−; W- boson
¦ noun another term for W particle.

Wikipédia

Wiesław Z. Wiśniewski

Wiesław Z. Wiśniewski (May 2, 1931 in Poland – February 28, 1994 in Tucson, Arizona, United States) was a Polish astronomer. Wisniewski was born and educated in Poland. He survived the Nazi occupation and many of his later insights and viewpoints may have grown from the hardships suffered during the war and the years afterwards. He began his career as a high school mathematics teacher before receiving his M.A. degree in astronomy from Poznan University in 1952 and his D.Sc. degree in astronomy from Jagiellonian University, Poland, in 1962. He joined the staff of the Cracow Observatory at Jagiellonian University as a research assistant in 1953. From 1957 to 1959, he participated as a Scientist of the International Geophysical Year Expedition to Spitsbergen. Wisniewski moved to the United States in 1963 to work as an astronomy professor at the newly founded Lunar and Planetary Laboratory at the University of Arizona in Tucson Arizona. Wisniewski returned to Poland in 1967, but eventually made his permanent home in Tucson, Arizona in 1971.

His main interests were comets and asteroids. Wisniewski was heavily involved in astronomical photometry which he learned while working with Harold Johnson at the Lunar and Planetary Laboratory. His later years were occupied with observations of asteroids and comets, especially of the light-curves of small asteroids as well as taxonomic measurements of asteroids. At the time of his death, he was actively planning to participate in a network of telescopes to observe the impacts of comet Shoemaker-Levy 9 on Jupiter. He had obtained one of the early high resolution images of the comet on March 28, 1993 while using the Steward Observatory 90 inch telescope.