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Please only physics II proficient. I am happy to give a perfect rate unless I get bad work. Kindly, pay attention to the communication section
Please only physics II proficient. I am happy to give a perfect rate unless I get bad work.
Kindly, pay attention to the communication section in case I have a question and correct the wrong answers if any.
Please print your final answers on top of the solution.
In an x-ray machine, electrons are accelerated from cathode [plate at negative potential] to anode [plate at positive potential} by a high potential difference between the plates, as shown in the figure below. If the potential difference between the plates is 30-k'v', find the kinetic energy gained by each electron and its speed as they arrive to the anode. Take electron charge 1.6::10'19 C and electron mass 9.11x1'31 kg. Note: the electron's speed that you will get may be faster tham'closer to the speed of light and it is not realistic because at high speed relativistic kinetic energy should be calculated differently. Relativistic kinetic energy reaches infinity when speed reaches the speed of light and hence speed can't be faster than the speed of light. This problem is for illustration purposes only. Relativistic effect need to be taken into account for realistic answer: Question Help: Emessage instructor D Submit Question \"D uni\" requiredStep by Step Solution
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