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1.What is the kinetic energy of an electron with a wavelength equal to the diameter of a hydrogen atom (0.1 nm)?
2.An electron collides elastically with a stationary hydrogen atom. The mass of the hydrogen atom is 1837 times that of the electron. Assume that all motion, before and after the collision, occurs along the same straight line. What is the ratio of the kinetic energy of the hydrogen atom after the collision.
3.Show that for a single particle with constant mass the equation of motion implies the following differential equation for the kinetic energy: dT/dt= F • v while if the mass varies with time the corresponding equation is d(mT)/dt= F • p.
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4.Light with a frequency of 2 X 10^15 Hz shines on a copper surface (=4.70 eV). What is the maximum kinetic energy of the photo electrons?
5.White light, with frequencies ranging from 4.00 x 10^14Hz to 7.90×10^14HZ is incident on a potassium surface. The work function of potassium is 2.24 eV. Find the maximum kinetic energy of electrons ejected from this surface.
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