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Chapter 4: Symmetries
Chapter 4: Symmetries

1. a) Give the formula for the linear momentum of an object
1. a) Give the formula for the linear momentum of an object

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... that each tricycle has three wheels, or 1 FSW3HP2 = 3 W. The problem can be solved by using the proper conversion factor derived from this expression. Calculate Solve for the unknown. You can write two conversion factors relating wheels to tricycles. The desired unit is W, so use the conversion fact ...
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P443 HW #11 Due April 21, 2008 1. Griffiths 9.1. A hydrogen atom is

... Answer : P (t) = {Ω2 /[(ω − ω0 )2 + Ω2 ]} sin2 (ω 0 t/2). (e) Sketch the resonance curve, P (ω) = ...
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" Quantum gravity": an oxymoron

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Limits of fractality: Zeno boxes and relativistic particles

... wave function of a particle so restricted is nowhere differentiable, neither in time nor in space. Specifically, let a particle be confined to a box, B, in which its dynamics are free but for which its wave function, ψ, has Dirichlet boundary conditions on the walls. Let ψ initially be constant in B ...
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... Some folks think “measurement” means “a conscious observer observes”, but QM is NOT precise about what a measurement is. If measurement requires a conscious observer, you get odd things, like Schroedinger’s Cat. There are almost no restrictions on what an arbitrary wavefunction looks like. (Must be ...
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... since changing the sign of both x and y amounts to a rotation. ...
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... ...because of the “wrong” statistics of the N and 6Li nuclei and the continuous -spectrum, I have hit upon a desperate remedy to save the law of conservation of energy. Namely, the possibility that there could exist in the nuclei electrically neutral particles, that I wish to call neutrons, which h ...
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Relativistic quantum mechanics

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