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Lecture 1-3 - UD Physics
Lecture 1-3 - UD Physics

... forced particle to "take a stand". We still have no idea why it "decided" on point C. Note: there is something very strange about concept of measurement. Answer #3. The agnostic position. Refuse to answer. Since the only way to know if you were right is to make a measurement, you no longer get "befo ...
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Linear Circuit Analysis with Reactive Components

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... Occurs in problems with cylindrical symmetry involving electric fields, vibrations, heat conduction, optical diffraction. Spherical Bessel functions arise in problems with spherical symmetry. de Broglie’s concept of an atom… Legendre’s equation: ...
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Wave Properties - MIT Haystack Observatory

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... The course has evolved to include approximately six short laboratory experiences during its progress. The particular experiments most recently performed are: (1) Charge to mass ratio of the electron (2) Photoelectric effect (3) Gas discharge spectra (4) Frank-Hertz experiment (5) Identification of r ...
EP-307 Introduction to Quantum Mechanics
EP-307 Introduction to Quantum Mechanics

... three laws which apparently have no concern with each other describe one physical phenomenon?  Why is it a physical phenomenon?  Planck solved the mystery by enunciating that it emitted radiation in quantas of h ...
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... ix. De Broglie found that electrons behaved as waves in diffraction experiments in 1924. x. Schrödinger showed that atomic wave spectra (electrons) could be predicted by wave functions in 1926. xi. Heisinger found that atomic properties were ‘indeterminant’ or uncertain in 1927. xii. When the double ...
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... from a metal when light shines on the metal Light had to be a certain minimum frequency for electrons to be emitted Wave theory of light said that any frequency of light should have worked This led to the concept of light as a particle ...
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Liad Elmelech 7.1-7.3 The Nature of Light, Atomic Spectroscopy

... • Threshold frequency reached when energy of a photon (hv) = binding energy(φ) • hv = φ • Low frequency light does not eject electrons because no single photon has enough energy to dislodge • Energy of a photon that is beyond what is needed to dislodge an electron is transferred to the electron in t ...
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3.13 The Hamiltonian for two interacting particles At the atomic scale

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Quantum-Mechanical Model of the Atom

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... (a) The hydrogen atom 1s and 2s orbitals have the same overall spherical shape, but the 2s orbital has a larger radial extension and one more node than the 1s orbital. (b) A single 2p orbital is directional in that its electron density is concentrated along one of the three Cartesian axes of the ato ...
UNM Physics 262, Problem Set 12, Fall 2006
UNM Physics 262, Problem Set 12, Fall 2006

... For some quantum systems, the lowest energy conguration predicted by quantum mechanics diers from the one predicted by classical mechanics because of the Heisenberg uncertainty principle. For example, one way to theoretically estimate the size of the hydrogen atom is to calculate how large a radiu ...
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... “operator”, which stands ready to “create” or “annihilate” a photon of any energy, , and momentum, k. ...
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... When integers appear (the "n" tells you to plug in 0, 1, 2, etc) that's quantum mechanics! A pictorial representation: ...
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Matter wave

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