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Screen-Based Graphic Design: Tips for non
Screen-Based Graphic Design: Tips for non

... • (c) The six flavors of quark are up, down, charmed, strange, left and right • (d) Neutrons have no charm (a) False: leptons are fundamental particles e.g e(b) True (c) False: there is no left and right quark, but there are top and bottom quarks ...
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... Physical Picture of Planck’s Hypothesis The physical background behind Planck’s proposal was that the atomic oscillators behave like simple (quantum) harmonic oscillators, which have a potential energy given by ...
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LAW: The first law of thermodynamics states that the total energy in

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... The Bisognano-Wichmann Theorem The PCT theorem was used by J. Bisognano and E. Wichmann in 1976 to derive a structural result that is of fundamental importance for the application of Tomita-Takesaki modular theory in relativistic quantum field theory. Let W be a space-like wedge in space-time, i.e. ...
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... (n) describe and explain motion due to a uniform velocity in one direction and a uniform acceleration in a perpendicular direction. 4. Dynamics Learning outcomes Candidates should be able to: (a) state each of Newton’s laws of motion (b) show an understanding that mass is the property of a body that ...
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... takes the form of eigenvalue equations where “H” parallels the matrix “A”, “Ψ” represents the eigenvectors “ν”, and “E” equals the eigenvalue “λ.” The Hamiltonian operator represents the forces and environment acting on a particle. When solving Schrödinger’s equation, a Hamiltonian operator can be r ...
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... d. You should know that the different energies of atomic orbitals control the order in which they fill up with electrons. e. You should be able to use the Aufbau Principle and know when and why to break it for certain elements. f. You must be able to draw an atomic orbital energy level diagram or wr ...
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... regularities, as invariants and invariant preserving transformations in the intended spaces (thus their symmetries), allow a finite description, even if they are infinite. Consider, say, a tri- (or more) dimensional Cartesian space, since Newton our preferred space for physics. It is infinite, but t ...
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... What’s Going On? Discuss the above questions: 1. A ground state electron in hydrogen will be in the 1s level, either ±½. 2. An electron that absorbs a photon is promoted to the next energy level (demonstrate this by moving one of the cups to a higher energy state). 3. This represents the n=3 level; ...
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... and momentum. ► Describe factors that affect the speed of a wave in different media. ► Solve problems involving wave speed, frequency, and wavelength. ► Analyze the reflection, refraction, and polarization of waves. ► Apply the superposition principle to analyze wave phenomena. ► Demonstrate knowled ...
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... F o r scattering of a particle by a magnetic field, the analog of a spherically symmetrical potential is a field H directed along the z axis and symmetrical with respect to rotations about this axis, while the trajectories of the incident charged particles a r e assumed to lie in the ( x , y ) plane ...
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... The idea of black holes is pretty exotic. We’d like to know if black holes actually exist. If they do, what are their properties? How massive? How many? At first, it seems unlikely that we could ever know. After all, if even light can’t escape from a black hole, how could be observe it? Nevertheless ...
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... where the eigenvalues are eik⊥z and the first half of the eigenvectors are φk⊥ . Note that H1 CAN NOT be singular. Now we calculate vk and sort out left- (φk̄ ) and right-moving (φk ) and ...
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T-symmetry

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