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[" (1) A particle is moving three times ...

[" (1) A particle is moving three times as fast "],[" as an electron.Whe reatio of de-Broghi "],[" wavelength of the particle to that of electron "],[" is "1.813times10^(-4)" .Calculats parcticle's mass "],[" Ef mass of electron is "9.11times10^(-31)kg" ."]

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A particle is moving three times as fast as an electron. The ratio of the de- Broglie wavelength of the particle to that of the electron is 1.813xx10^-4 . Calculate the particle's mass and identify the particle. Mass of electron =9.11xx10^(-31)kg .

A particle is moving three times as fast as an electron. The ratio of the de- Broglie wavelength of the particle to that of the electron is 1.813xx10^-4 . Calculate the particle's mass and identify the particle. Mass of electron =9.11xx10^(-31)kg .

A particle is moving three times as fast as an electron. The ratio of the de- Broglie wavelength of the particle to that of the electron is 1.813xx10^-4 . Calculate the particle's mass and identity the particle. Mass of electron =9.11xx10^(-31)kg .

A particle is moving three times as fast as an electron. The ratio of the de Broglie wavelength of the particle to that of the electron is 1.813xx10^(-4) . Calculate the particle's mass and identify the particle.

A particle is moving three times as fast as an electron. The ratio of the de Broglie wavelength of the particle to that of the electron is 1.813 xx 10^(-4) . Calculate the particle’s mass and identify the particle.

A particle is moving three times as fast as an electron. The ratio of the de Broglie wavelength of the particle to that of the electron is 1.813 xx 10^(-4) . Calculate the particle’s mass and identify the particle.

A particle is moving three times as fast as an electron. The ratio of the de Broglie wavelength of the particle to that of the electron is 1.813 xx 10^(-4) . Calculate the particle’s mass and identify the particle.