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[" In an electron microscope,the "],[" r...

[" In an electron microscope,the "],[" resolution that can be achieved is "],[" of the order of the wavelength of "],[" electrons used.To resolve a width "],[" of "7.5times10^(-12)m" ,the minimum "],[" electron energy required is close "],[" to - "]

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In an electron microscope, the resolution that can be achieved is of the order of the wavelength of electrons used. To resolve a width of 7.5 xx 10^(-12) m, the minimum electron energy required is close to :

In an electron microscope, the resolution that can be achieved is of the order of the wavelength of electrons used. To resolve a width of 7.5 xx 10^(-12) m, the minimum electron energy required is close to :

In an electron microscope, the resolution that can be achieved is of the order of the wavelength of electrons used. To resolve a width of 17.5 xx 10^(-12) m, the minimum electron energy required is close to:

The wavelength of an electron of energy 10keV will be

The wavelength of an electron of energy 10 keV will be :

The minimum energy required to remove an electron is called

The minimum energy required to remove an electron is called