Physics, 02.07.2019 22:20 kyleee4473
Two identical spin 1/2 fermions move in one space dimension in the infinite quantum well potential v(x) = 0 for 0 lessthanorequalto x lessthanorequalto l and v(x) = infinity otherwise. write: a) the spatial ground state wave function, and the ground state energy, when the two particles are in a spin-triplet state: b) the spatial wave function for the first excited state, and its energy, when the two particles are in a spin-triplet state: c) the spatial wave function for the second excited state, and its energy, when the two particles are in a spin-triplet state: d) the spatial ground state wave function, and the ground state energy, when the two particles are in a spin-singlet state: e) the spatial wave function for the first excited state, and its energy, when the two particles are in a spin-singlet state: f) the spatial wave function for the second excited state, and its energy, when the two particles are in a spin-singlet state:
Answers: 2
Physics, 21.06.2019 20:00
Excuse ! extra points plus ! super desperate ! the position of an object does not move relative to a reference point. relative to the reference point the object _. a.) is not moving. b.) is moving.
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Physics, 22.06.2019 03:30
What makes thermal imaging cameras useful? they can detect differences in color. they can detect differences in wave speeds. they can detect differences in temperature. they can detect mechanical waves.
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Physics, 22.06.2019 10:30
Air is to be preheated by hot exhaust gases in a cross-flow heat exchanger before it enters the furnace. air enters the heat exchanger at 95 kpa and 20°c at a rate of 0.6 m^3/s. the combustion gases (cp = 1.10 kj/kg°c) enter at 160°c at a rate of 0.95 kg/s and leave at 95°c. determine the rate of heat transfer to the air and its outlet temperature.
Answers: 2
Two identical spin 1/2 fermions move in one space dimension in the infinite quantum well potential v...
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