Compute the de Broglie wavelength of the following: (a) A 1000-kg automobile traveling at 100 m/s (about 200 mi/h). (b) A 10-g bullet traveling at 500 m/s. (c) A smoke particle of mass 109 g moving at 1 cm/s. (d) An electron with a kinetic energy of 1 eV. (e) An elec- tron with a kinetic energy of 100 MeV.
Compute the de Broglie wavelength of the following: (a) A 1000-kg automobile traveling at 100 m/s (about 200 mi/h). (b) A 10-g bullet traveling at 500 m/s. (c) A smoke particle of mass 109 g moving at 1 cm/s. (d) An electron with a kinetic energy of 1 eV. (e) An elec- tron with a kinetic energy of 100 MeV.
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![Compute the de Broglie wavelength of the following:
(a) A 1000-kg automobile traveling at 100 m/s (about
200 mi/h). (b) A 10-g bullet traveling at 500 m/s.
(c) A smoke particle of mass 10 g moving at 1 cm/s.
(d) An electron with a kinetic energy of 1 eV. (e) An elec-
tron with a kinetic energy of 100 MeV..](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F36bc013e-8bac-4f23-baba-054d833c24fc%2F937d5d03-7cb2-424d-8563-9f6f5423b919%2Ftdtg5lk_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Compute the de Broglie wavelength of the following:
(a) A 1000-kg automobile traveling at 100 m/s (about
200 mi/h). (b) A 10-g bullet traveling at 500 m/s.
(c) A smoke particle of mass 10 g moving at 1 cm/s.
(d) An electron with a kinetic energy of 1 eV. (e) An elec-
tron with a kinetic energy of 100 MeV..
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