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for their pioneering work in the discovery of a heavy elementary particle of a new kind
for the discovery of the connection between collective motion and particle motion in atomic nuclei and the development of the theory of the structure of the atomic nucleus based on this connection
for the discovery of the connection between collective motion and particle motion in atomic nuclei and the development of the theory of the structure of the atomic nucleus based on this connection
for the discovery of the connection between collective motion and particle motion in atomic nuclei and the development of the theory of the structure of the atomic nucleus based on this connection
for their pioneering research in radio astrophysics: Ryle for his observations and inventions, in particular of the aperture synthesis technique, and Hewish for his decisive role in the discovery of pulsars
for their pioneering research in radio astrophysics: Ryle for his observations and inventions, in particular of the aperture synthesis technique, and Hewish for his decisive role in the discovery of pulsars
for their experimental discoveries regarding tunneling phenomena in semiconductors and superconductors, respectively
for his theoretical predictions of the properties of a supercurrent through a tunnel barrier, in particular those phenomena which are generally known as the Josephson effects
for their experimental discoveries regarding tunneling phenomena in semiconductors and superconductors, respectively
for their jointly developed theory of superconductivity, usually called the BCS-theory
for their jointly developed theory of superconductivity, usually called the BCS-theory
for their jointly developed theory of superconductivity, usually called the BCS-theory
for his invention and development of the holographic method
for fundamental work and discoveries concerning antiferromagnetism and ferrimagnetism which have led to important applications in solid state physics
for fundamental work and discoveries in magnetohydro-dynamics with fruitful applications in different parts of plasma physics
for his contributions and discoveries concerning the classification of elementary particles and their interactions
for his decisive contributions to elementary particle physics, in particular the discovery of a large number of resonance states, made possible through his development of the technique of using hydrogen bubble chamber and data analysis
for his contributions to the theory of nuclear reactions, especially his discoveries concerning the energy production in stars
for the discovery and development of optical methods for studying Hertzian resonances in atoms
for their fundamental work in quantum electrodynamics, with deep-ploughing consequences for the physics of elementary particles
for their fundamental work in quantum electrodynamics, with deep-ploughing consequences for the physics of elementary particles
for their fundamental work in quantum electrodynamics, with deep-ploughing consequences for the physics of elementary particles
for fundamental work in the field of quantum electronics, which has led to the construction of oscillators and amplifiers based on the maser-laser principle
for fundamental work in the field of quantum electronics, which has led to the construction of oscillators and amplifiers based on the maser-laser principle
for fundamental work in the field of quantum electronics, which has led to the construction of oscillators and amplifiers based on the maser-laser principle