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Exercise:
Calculate the de Broglie wavelength of a person with mass mO and body temperature TO at rest. Due to the thermal motion the average kinetic energy of the centre of mass is not zero!.

Solution:
The average kinetic energy is given by sscEkin frackT fracp^m The average momentum is thus p sqrt m k T It follows for the de Broglie wavelength lambda frachp laF fracnchsqrt times m times nck times TK resultlaS
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Exercise:
Calculate the de Broglie wavelength of a person with mass mO and body temperature TO at rest. Due to the thermal motion the average kinetic energy of the centre of mass is not zero!.

Solution:
The average kinetic energy is given by sscEkin frackT fracp^m The average momentum is thus p sqrt m k T It follows for the de Broglie wavelength lambda frachp laF fracnchsqrt times m times nck times TK resultlaS
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Branches
quantum physics
Tags
de broglie, thermal motion, wavelength
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Difficulty
(3, default)
Points
0 (default)
Language
ENG (English)
Type
Calculative / Quantity
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