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When would the be Broglie wavelength of ...

When would the be Broglie wavelength of a moving electron become equal to that of a moving proton? Mass of electron `= 9.1095 xx 10^(-31)kg` and mass of proton = `1.6725 xx 10^(-27) kg`

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To find when the de Broglie wavelength of a moving electron becomes equal to that of a moving proton, we can follow these steps: ### Step 1: Write the de Broglie wavelength formula The de Broglie wavelength (λ) is given by the formula: \[ \lambda = \frac{h}{mv} \] where \(h\) is Planck's constant, \(m\) is the mass of the particle, and \(v\) is its velocity. ...
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Calculate the de Broglie wavelength of an electron moving with a velocity of 0.3c. Rest mass of an electron is 9.1xx10^(-31)kg.

When would wavelength associated with an electron become equal to the wavelength associated with a proton ? (m_(e) = 9.1095 xx 10^(-28) g and m_(p)=1.6725 xx 10^(-24)g) .

Calculate the equivalent energy of electrons and proton at rest. Given that mass of electron =9.1xx10^(-31)kg and mass of proton =1.673xx10^(-27)kg .

What is the number of significant figures in each of the following ? (i) Mass of electron = 9.108 xx 10^(-31) kg (ii) Mass of proton = 1.672 xx 10^(-27) kg (iii) 0.00564 .

How fast does a proton have to be moving with order to have the same de-Broglie wavelength as an electron that is moving with a speed of 5.5xx10^(6)ms^(-1) ? Mass of proton =1.67xx10^(-27)kg .

The rest mass of an electron is 9.11xx10^(-31) kg. Molar mass of the electron is

Considering the wavelengths of electron and proton to be equal,the ratio of their velocities (v_(e)/(v_(p) would be: (mass of electron =9.1times10^(-31)kg, mass of proton =1.67 times10^(-27)kg

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