Some planetary scientists have suggested that the planet Mars has an electric field somewhat similar to that of the earth, producing a net electric flux of -3.63 x 1016 N - m2 /C at the planet's surface. Part A Calculate the total electric charge on the planet. Express your answer with the appropriate units. ? q = Value Units Part B Calculate the electric field at the planet's surface (refer to the astronomical data in the textbook). Express your answer with the appropriate units. E = Value Units
Some planetary scientists have suggested that the planet Mars has an electric field somewhat similar to that of the earth, producing a net electric flux of -3.63 x 1016 N - m2 /C at the planet's surface. Part A Calculate the total electric charge on the planet. Express your answer with the appropriate units. ? q = Value Units Part B Calculate the electric field at the planet's surface (refer to the astronomical data in the textbook). Express your answer with the appropriate units. E = Value Units
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Transcribed Image Text:Part C
Calculate the charge density on Mars, assuming all the charge is uniformly distributed over the planet's surface.
Express your answer with the appropriate units.
HÀ
?
Value
Units

Transcribed Image Text:Some planetary scientists have suggested that the planet
Mars has an electric field somewhat similar to that of the
earth, producing a net electric flux of
-3.63 x 1016 N. m2 /C at the planet's surface.
Part A
Calculate the total electric charge on the planet.
Express your answer with the appropriate units.
Value
Units
Part B
Calculate the electric field at the planet's surface (refer to the astronomical data in the textbook).
Express your answer with the appropriate units.
μΑ
?
E =
Value
Units
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