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moment of inertia - Deer Creek High School
moment of inertia - Deer Creek High School

... An object is said to be in static equilibrium if both its velocity and angular velocity are zero or constant. First, it must be in translational equilibrium; that is, the net force exerted on the object must be zero. Second, it must be in rotational equilibrium; that is, the net torque exerted on th ...
Temperature dependence of spectral functions for the one
Temperature dependence of spectral functions for the one

erice_091014 - Astronomy & Astrophysics Group
erice_091014 - Astronomy & Astrophysics Group

Chapter 3 Nuclear Force and Two
Chapter 3 Nuclear Force and Two

Derivation of the Maxwell`s Equations Based on a Continuum
Derivation of the Maxwell`s Equations Based on a Continuum

... Before the unification of electromagnetic phenomena and light phenomena by Maxwell in 1860s, light phenomena were also studied independently based on Descartes’ scientific research program of the mechanical theory of nature. John Bernoulli introduced a fluidic aether theory of light in 1752[17]. Eul ...
THE ELECTRON DENSITY DISTRIBUTION IN THE HYDROGEN
THE ELECTRON DENSITY DISTRIBUTION IN THE HYDROGEN

... expanded in a finite set of atom-centred functions consisting of spherical harmonics up to 1~4 to describe the angular dependence, each multiplied by a radial part. The theoretical density distribution shows high resolution which makes it necessary to describe the radial part by the superposition of ...
Superconductivity, a Physical Chemical Perspective
Superconductivity, a Physical Chemical Perspective

Wavelength dependence of femtosecond laser
Wavelength dependence of femtosecond laser

Intro to Physics - Fort Thomas Independent Schools
Intro to Physics - Fort Thomas Independent Schools

Conceptual Physical Science 5e — Chapter 3
Conceptual Physical Science 5e — Chapter 3

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PowerPoint - Subir Sachdev

Physics Regents Review Sheet
Physics Regents Review Sheet

... _____ what a wave is _____ the difference between longitudinal and transverse waves _____ an example of a longitudinal and transverse wave _____ what a pulse is _____ what a periodic wave is _____ what the amplitude of a wave is and how it affects sound/light _____ what “in phase” and “out of phase ...
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PowerPoint Presentation - ABOUT TEAL

Energy levels of Pr3+ in Y(OH)3 determined from absorption and... by James Keith Boger
Energy levels of Pr3+ in Y(OH)3 determined from absorption and... by James Keith Boger

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their evolution, nucleosynthesis and dusty end

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Time-dependent molecular properties in the optical and x-ray regions Ulf Ekstr¨om

... In this thesis near edge x-ray absorption fine structure (NEXAFS) spectra have been calculated at the ab initio level of theory, in order to explain how these spectra relate to various properties of the molecules under study. A solid theoretical foundation is important, due to the increasing experim ...
Theory of electronic states and transport in carbon nanotubes
Theory of electronic states and transport in carbon nanotubes

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... describe the relation between Newton’s 2nd law of motion and the rate of change of momentum; infer impulse as product of impulsive force and time; describe law of conservation of momentum; apply law of conservation of momentum and study the special cases of elastic collision between two bodies in on ...
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Work Done by a Constant Force

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БЕЗОТРАЖАТЕЛЬНОЕ ПРОХОЖДЕНИЕ ВОЛНЫ ЧЕР
БЕЗОТРАЖАТЕЛЬНОЕ ПРОХОЖДЕНИЕ ВОЛНЫ ЧЕР

... been shown that in the inhomogeneous plasma layer under the reflectionless propagation the wave amplitude spatial profile may has the solitonlike structure. Moreover for the case of relatively small variations of local effective plasma permettivity the large modulations both wave amplitude and wave ...
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PPT

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Chapter 10 Angular Momentum

... car into an electrical outlet and a motor spins the flywheel up to speed, adding a huge amount of rotational kinetic energy to it—energy that will be changed into translational kinetic energy of the car during the day. Having taken a physics course involving angular momentum and torques, you realize ...
Quantization of Atomic Energy Levels
Quantization of Atomic Energy Levels

Numerical simulation of the Zeeman effect in neutral xenon from NIR
Numerical simulation of the Zeeman effect in neutral xenon from NIR

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Photon polarization

Photon polarization is the quantum mechanical description of the classical polarized sinusoidal plane electromagnetic wave. Individual photon eigenstates have either right or left circular polarization. A photon that is in a superposition of eigenstates can have linear, circular, or elliptical polarization.The description of photon polarization contains many of the physical concepts and much of the mathematical machinery of more involved quantum descriptions, such as the quantum mechanics of an electron in a potential well, and forms a fundamental basis for an understanding of more complicated quantum phenomena. Much of the mathematical machinery of quantum mechanics, such as state vectors, probability amplitudes, unitary operators, and Hermitian operators, emerge naturally from the classical Maxwell's equations in the description. The quantum polarization state vector for the photon, for instance, is identical with the Jones vector, usually used to describe the polarization of a classical wave. Unitary operators emerge from the classical requirement of the conservation of energy of a classical wave propagating through media that alter the polarization state of the wave. Hermitian operators then follow for infinitesimal transformations of a classical polarization state.Many of the implications of the mathematical machinery are easily verified experimentally. In fact, many of the experiments can be performed with two pairs (or one broken pair) of polaroid sunglasses.The connection with quantum mechanics is made through the identification of a minimum packet size, called a photon, for energy in the electromagnetic field. The identification is based on the theories of Planck and the interpretation of those theories by Einstein. The correspondence principle then allows the identification of momentum and angular momentum (called spin), as well as energy, with the photon.
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