The de Broglie wavelength of a tennis ball of mass 60 gm moving at 10 m/s is approximately: 10-31 m 10-33 m 10-18 m 10-25 m
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Q: ompare the wavelength for an electron (mass = 9.11 * 10-31 kg) traveling at a speed of 1.0 * 107…
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A: Given, v=200v λ=hP=h2meV=6.626×10-342×9.1×10-31×1.6×10-19×200=0.867×10-10 m
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A: Given: The DE Broglie wavelength (λ) = 1.0×10-10 m.
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Q: The de Broglie wavelength of a tennis ball of mass 60 gm moving at 10 m/s is approximately: 10-31 m…
A: Given data: A tennis ball Mass (m) = 60 gm Speed (v) = 10 m/s Required: The de Broglie wavelength
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Q: The de Broglie wavelength of a tennis ball of mass 60 gm moving at 10 m/s
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Q: The de Broglie wavelength of a tennis ball of mass 60 gm moving at 10 m/s is approximately: 10-31 m…
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