Part 2
In an X – ray tube , the intensity of the emitted X – ray beam is increased by
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Jun
In an X – ray tube , the intensity of the emitted X – ray beam is increased by In an X-ray tube the intensity of the emitted X - ray beam is increased by June 17, 2021 Category: Cengage NEET by C.P Singh , Chapter 13 - X Rays , Part 2 ,
X-ray incident on a material (i) exerts a force on it
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Jun
X-ray incident on a material (i) exerts a force on it X-ray incident on a material (i) exerts a force on it June 17, 2021 Category: Cengage NEET by C.P Singh , Chapter 13 - X Rays , Part 2 ,
When the electrons strikes the target in a Coolidge tube, its entire kinetic energy
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Jun
When the electrons strikes the target in a Coolidge tube, its entire kinetic energy its entire kinetic energy When the electrons strikes the target in a Coolidge tube June 17, 2021 Category: Cengage NEET by C.P Singh , Chapter 13 - X Rays , Part 2 ,
The potential difference applied to an X-ray tube is increased. As a result, in the emitted radiation,
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Jun
The potential difference applied to an X-ray tube is increased. As a result, in the emitted radiation, in the emitted radiation The potential difference applied to an X -ray tube is increased. As a result June 17, 2021 Category: Cengage NEET by C.P Singh , Chapter 13 - X Rays , Part 2 ,
If the current in the circuit for heating the filament is increased, the cut off wavelength
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Jun
If the current in the circuit for heating the filament is increased, the cut off wavelength If the current in the circuit for heating the filament is increased the cut-off wavelength June 17, 2021 Category: Cengage NEET by C.P Singh , Chapter 13 - X Rays , Part 2 ,
If the potential difference applied to tube is doubled and the separation between the filament and the target is also doubled, the cut-off wavelength
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Jun
If the potential difference applied to tube is doubled and the separation between the filament and the target is also doubled, the cut-off wavelength If the potential difference applied to tube is doubled and the separation between the filament and the target is also doubled the cut-off wavelength June 17, 2021 Category: Cengage NEET by [...]
Consider a photon of continuous X-ray coming from a Coolidge tube. Its energy comes from
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Jun
Consider a photon of continuous X-ray coming from a Coolidge tube. Its energy comes from Consider a photon of continuous X-ray coming from a Coolidge tube. Its energy comes from June 17, 2021 Category: Cengage NEET by C.P Singh , Chapter 13 - X Rays , Part 2 ,
If an electron and a photon propagate in the form of waves having the same wavelength , it implies that they have the same
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Jun
If an electron and a photon propagate in the form of waves having the same wavelength , it implies that they have the same If an electron and a photon propagate in the form of waves having the same wavelength it implies that they have the same June 17, 2021 Category: Cengage NEET by C.P [...]
When the momentum of a proton is changed by an amount p0, the corresponding change in the de-Broglie wavelength is found to be 0.25%. Then, the original momentum of the proton was
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Jun
When the momentum of a proton is changed by an amount p0, the corresponding change in the de-Broglie wavelength is found to be 0.25%. Then, the original momentum of the proton was the corresponding change in the de-Broglie wavelength is found to be 0.25%. Then the original momentum of the proton was When the momentum [...]
λe, λp and λα are the de-Broglie wavelength of electron, proton and α particle. If all the accelerated by same potential, then
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Jun
λe, λp and λα are the de-Broglie wavelength of electron, proton and α particle. If all the accelerated by same potential, then proton and α particle. If all the accelerated by same potential then λe λp and λα are the de-Broglie wavelength of electron June 17, 2021 Category: Cengage NEET by C.P Singh , Chapter [...]