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The potential difference applied to an X-ray tube is 5 kV and the current through it - NEETLab
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An X - ray tube operated at 50kW , produces heat at the target at the rate of 796W . If 0.5
Number of pulses on Target (per second), after applying selection S1.... | Download Scientific Diagram
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The potential difference applied to an Xray tube is 5kV and the current through it is 32mA Then the number of electrons striking the target per second is
The electric current in an X-ray tube (from the target to the filament) operating at 40 kV is 10 mA. Assume that on an average, - Sarthaks eConnect | Largest Online Education Community
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An x-ray tube operating at a potential difference of 50KV has a tube current 20mA.Calculate.
An x-ray tube is operated at 20 kV and the current through the tube is 0*5 mA. Find (a) the number of electrons hitting the target per second, (b) the energy falling
Fraction of targets detected per second as a function of the duration... | Download Scientific Diagram
The potential difference applied to an X - ray tube is 5 kV and the current through it is 3.2 mA. Then the number of electrons striking the target per second is roughly:
SOLVED:A sharpshooter intends to hit a target at a distance of 1000 yards with a gun that hasa muzzle velocity of 1200 feet per second (see figure).Neglecting air resistance, determine the gun
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The potential difference applied to an X-ray tube is 5k V and the current through it is 3.2 mA. Then, the number of electrons striking the target per second is. (a) 2xx10^16 (
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The potential difference applied to an X - ray tube is 5 kV and the current through it is 3.2 mA. What is the number of electrons striking the target per second ?
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Solved 7. If an X-ray tube is operating at a current of 11.0 | Chegg.com