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Lightning occurs when a large amount of char e builds up at the bottom of a cloud and a large amount of oppisite charge builds

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Lightning occurs when a large amount of char e builds up at the bottom of a cloud and a large amount of oppisite charge builds up on the ground below. The resulting strong electric fie d between the cloud and the ground is large enough to ionize air (mainly molecular nitrogen and oxygen). The ionized air can then conduct electrons between the cloud and ground. If we take a particular moment in time (or a \"snapshot\") of a lightning bolt, we could model it as a two lines of charge. One comprised of very massive positively charged ions and the other compirised of very light negative charges (electrons). For this problem, just consider the negative line of charge, that is the free electrons. Height of the cloud 6U!piinq em J0 :iuiaH ll Distance to the building If we pick a small bolt 17.1 C from a low cloud at 766 m above the ground, what would be the electric potential at the top of a 236 m tall buildin that is 443 m away from the bolt clue to the negative line 0 charge alone? Remember you can use WolframAlpha, matlab, mathematica, Distance to the building If we pick a small bolt 17.1 C from a low cloud at 766 m above the ground, what would be the electric potential at the top of a 236 m tall building that is 443 m away from the bolt due to the negative line 0 charge alone? Remember you can use WolframAIpha, matlab, mathematica, or a ca culator to perform the integral. Note: the potential due to both lines of charge is zero, as there are equal amounts of postive charge(ions) and negative charge (electrons). V: Tries 0/8 If we take the same situation and place a charged balloon with charge 5.54x10'7 C on the top of the building, what would be the electric potential energy of a system including only the negative line of charge and the balloon? UE= SubmitAnswer Tries 0/8

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