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184_projects:chasing_thunderclouds [2022/01/04 15:38] – created dmcpadden | 184_projects:chasing_thunderclouds [2022/09/07 13:05] (current) – [Project: Chasing a Thundercloud] dmcpadden | ||
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- | ===== Project | + | ===== Project: Chasing a Thundercloud ===== |
- | You and your group are a team of storm chasers tracking a massive thundercloud moving across the plains and into the mountains beside the town of Lakeview. You grab your handy-dandy high voltage probe ([[https:// | + | You and your group are a team of storm chasers tracking a massive thundercloud moving across the plains and into the mountains beside the town of Lakeview. You grab your handy-dandy high voltage probe ([[https:// |
<WRAP info> | <WRAP info> | ||
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* Explain how electric field and electric potential are related | * Explain how electric field and electric potential are related | ||
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+ | Conceptual Questions: | ||
+ | - What direction does $r_{source}$ point? What direction does $r_{obs}$ point? What direction does $r_{sep}$ point? Draw all of these on your diagram. | ||
+ | - What would change about your solution if the thundercloud were the opposite charge (positive instead of negative or vice versa)? Does $r_{sep}$ change? Does the E-field change? Does the electric potential change? | ||
+ | - What are the similarities & differences between electric field and electric potential? | ||
+ | - What direction should the electric field point for positive charges? What direction should it point for negative charges? | ||
+ | - What sort of assumptions did you make in this problem? How realistic are they? | ||
+ | - How big is 1 Coulomb of charge? (how much charge is on a single electron, in a lightning bolt, on your socks when you rub the on carpet?) | ||
+ | - What would change about your solution if you picked a different origin point? Pick a different origin & write out the calculation for the Electric Field on top of HQ. | ||
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