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Quantum States of Neutrons in the Gravitational Field
Quantum States of Neutrons in the Gravitational Field

- Quantum Optics Group
- Quantum Optics Group

... also defines the phase variation of the optical beam seen when circling its axis, i.e., the wavefront phase factor exp(imϕ), where ϕ is the azimuthal angle around the optical axis z . The spin and orbital angular momentum components can also be distinguished according to their different mechanical a ...
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... motion if only one out of three coordinates specifying the position of the object change with time. In such a motion an object move along a straight line path. *Two dimensional motion:- The motion of an object is said to be two dimensional motion if two out of three coordinates specifying the positi ...
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Thermodynamics and Statistical Mechanics

... It is necessary to emphasize, from the very outset, that thermodynamics is a difficult subject. In fact, this subject is so difficult that we are forced to adopt a radically different approach to that employed in other areas of physics. In most areas of physics, we can formulate some exact, or nearly exa ...
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1 Path Integrals and Their Application to Dissipative Quantum Systems

... The most often used and taught approach to nonrelativistic quantum mechanics is based on the Schrödinger equation which possesses strong ties with the the Hamiltonian formulation of classical mechanics. The nonvanishing Poisson brackets between position and momentum in classical mechanics lead us t ...
Fluctuations of the Electromagnetic Vacuum Field or radiation
Fluctuations of the Electromagnetic Vacuum Field or radiation

... unit volume, but also per frequency interval dω. This quantity is the product of the energy of one mode — which in the case of the vacuum is half a quanta, ...
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... In order to understand the basics of the nucleon-nucleon interaction and the pertaining symmetries, we need to define the relevant quantum numbers and how we build up a single-particle state and a two-body state, and obviously our final holy grail, a many-boyd state. For the single-particle states, ...
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Introduction to Quantum Computing (2010) (e-book)

... Information is something that can be encoded in the state of a physical system, and a computation is a task that can be performed with a physically realizable device. Therefore, since the physical world is fundamentally quantum mechanical, the foundations of information theory and computer science s ...
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... Conservative Forces and Potential Energy  Conservative Force:  It is defined by the work done in moving a particle from one point to another that is independent of the path followed by the particle.  Two examples are weight of the particle and elastic force of the spring.  Potential Energy:  It ...
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Quantum Mechanics of Many-Particle Systems: Atoms, Molecules

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... There is a final exam at the end of this course. The questions are practical, and are less mathematical than those in the quizzes. The final exam contains questions drawn from Parts One, Two, and Three. Take this exam when you have finished all the sections, all the section tests, and all of the cha ...
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... 14 For a system consisting of two particles that undergo an elastic collision, A) momentum is conserved but the total energy is not conserved. B) neither the kinetic energy nor the momentum is conserved. C) neither the total energy nor the momentum is necessarily conserved. D) the mechanical energy ...
Photonic band gap materials: Optical materials for the 21st century
Photonic band gap materials: Optical materials for the 21st century

... above requires materials which can scatter light much more strongly than any naturally occurring material. We experience multiple light scattering when it becomes dark on a cloudy day. Light from the sun scatters many times from water droplets, following a tortuous diffusion path before reaching the ...
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Discrete vs continuous controversy in physics
Discrete vs continuous controversy in physics

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