Wave Interference 22. A 2-slit experiment involves electrons that are accelerated with bias equal to 1,050 V, with a slit separation of 2 nm and slit-screen separation of 15 cm. (a) Calculate the kinetic energy of the electrons in units of eV. (b) Calculate the velocity of the electrons in m/s. (c) Calculate the wavelength of the electrons in nm. (d) Calculate the distance between the fringes in cm.
Wave Interference 22. A 2-slit experiment involves electrons that are accelerated with bias equal to 1,050 V, with a slit separation of 2 nm and slit-screen separation of 15 cm. (a) Calculate the kinetic energy of the electrons in units of eV. (b) Calculate the velocity of the electrons in m/s. (c) Calculate the wavelength of the electrons in nm. (d) Calculate the distance between the fringes in cm.
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![Wave Interference
22. A 2-slit experiment involves electrons that are accelerated with bias equal to 1,050 V,
with a slit separation of 2 nm and slit-screen separation of 15 cm.
(a) Calculate the kinetic energy of the electrons in units of eV.
(b) Calculate the velocity of the electrons in m/s.
(c) Calculate the wavelength of the electrons in nm.
(d) Calculate the distance between the fringes in cm.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd9febe5d-8b15-43b8-b1a2-ee1d05ea5a44%2Fff48c38c-8745-4452-a8b5-164f9be91ebd%2Fs50uqmg_processed.png&w=3840&q=75)
Transcribed Image Text:Wave Interference
22. A 2-slit experiment involves electrons that are accelerated with bias equal to 1,050 V,
with a slit separation of 2 nm and slit-screen separation of 15 cm.
(a) Calculate the kinetic energy of the electrons in units of eV.
(b) Calculate the velocity of the electrons in m/s.
(c) Calculate the wavelength of the electrons in nm.
(d) Calculate the distance between the fringes in cm.
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