- Reduced This Increases The Collision Rate And As We Discussed Earlier At Every Collision The Charged Particles Loss The 1 (102.33 KiB) Viewed 37 times
reduced. This increases the collision rate and as we discussed earlier at every collision the charged particles loss the
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reduced. This increases the collision rate and as we discussed earlier at every collision the charged particles loss the
reduced. This increases the collision rate and as we discussed earlier at every collision the charged particles loss their directed velocity along electric field and again they are re-accelerated towards field. It can be said that over all mobility of the charged particles is reduced so the voltage required to maintain the arc is increased. Another effect of the increased density of particles is a higher rate of deionization of gas due to the recombination of oppositely charged particles. The rate of ionization of gas depends upon the intensity of impact during collision of gas particles. The intensity of impact during collision of particles again depends upon velocity of random motions of the particles. This random motion of a particle and its velocity increases with increase of temperature of the gas. Hence it can be concluded like that if 1. High resistance method. 2. Low resistance method or zero interruption method. In high interruption method we can increase the electrical resistance many times to such a high value that it forces the current to reach to zero and thus restricting the possibility of arc to be struck again. Proper steps must be taken in order to ensure that the rate at which the resistance is increased or decreased is not abnormal because it may lead to generation of harmful induced voltages in the system. The arc resistance can be increased by various methods like lengthening or cooling of the arr ptr C++ Code Only: Write a program to print the following output: 1 1 1 1 2 1 1 3 3 1 1 4 6 4 1 15 10 10 5 1