A 1650 kg car moving at 18 m/s approaches a hill that is 27 m high...
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A 1650 kg car moving at 18 m/s approaches a hill that is 27 m high and 33 m long. Although the car and hill are clearly too large to be 82m(UE) treated as matter waves, determine what the equation Te 2b, where Im is the mass, Lis the barrier thickness, Ub - E is the energy difference and h is the Planck constant, predicts for the transmission coefficient of the car, as if it could tunnel through the hill as a matter wave. Treat the hill as a potential energy barrier where the potential energy is gravitational. Find the value of x in the expression T=ex. x = Number i 2.10 eTextbook and Media Units No units What are (a) the energy of a photon corresponding to wavelength 5.36 nm, (b) the kinetic energy of an electron with de Broglie wavelength 5.36 nm, (c) the energy of a photon corresponding to wavelength 5.36 fm, and (d) the kinetic energy of an electron with de Broglie wavelength 5.36 fm? (a) Number 2.32 Units keV (b) Number i 15.0 Units eV (c) Number 2.32 Units GeV (d) Number i 1179 Units GeV A 1650 kg car moving at 18 m/s approaches a hill that is 27 m high and 33 m long. Although the car and hill are clearly too large to be 82m(UE) treated as matter waves, determine what the equation Te 2b, where Im is the mass, Lis the barrier thickness, Ub - E is the energy difference and h is the Planck constant, predicts for the transmission coefficient of the car, as if it could tunnel through the hill as a matter wave. Treat the hill as a potential energy barrier where the potential energy is gravitational. Find the value of x in the expression T=ex. x = Number i 2.10 eTextbook and Media Units No units What are (a) the energy of a photon corresponding to wavelength 5.36 nm, (b) the kinetic energy of an electron with de Broglie wavelength 5.36 nm, (c) the energy of a photon corresponding to wavelength 5.36 fm, and (d) the kinetic energy of an electron with de Broglie wavelength 5.36 fm? (a) Number 2.32 Units keV (b) Number i 15.0 Units eV (c) Number 2.32 Units GeV (d) Number i 1179 Units GeV
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