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Problems with solutions

I.D Level Problem Problem Topic
425 High school What is the magnitude of the acceleration experienced by an electron in an electric field of 600 N/C ? How does the direction of the acceleration depend on the direction of the field at that point ? . . . continues
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Electrostatics
426 High school What is the magnitude and direction of the electric field 20.0 cm directly above an isolated 33.0 x 10^-6C charge ? . . . continues
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Electrostatics
427 High school An electron is released from rest in a uniform electric field and acceleration to the north at a rate of 145 m/s^2 . What is the magnitude and direction of the electric field ? . . . continues
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Electrostatics
428 High school Is the electric field E in Gauss’s law , integral E. dA = charge enclosed / epsilon naught , that due only to the charge enclose ? . . . continues
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Electrostatics
429 High school What can you say about the flux through a closed surface that encloses an electric dipole ? . . . continues
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Electrostatics
430 High school The electric field E is zero at all points on a closed surface ; is there necessarily no net charge with in the surface ? If a surface encloses zero net charge , is the electric field necessarily zero at all points on the surface ? . . . continues
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Electrostatics
431 High school Define gravitational flux in analogy to electric flux . Are there “sources” and “sinks” for the gravitational field as there are for the electric field ? Discuss . . . . continues
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Electrostatics
432 High school A solid metal sphere of radius 3.00m carries a total charge of -3.50 microC. What is the magnitude of the electric field at a distance from the sphere center of

(a) 0.15m

(b) 2.90m,

(c) 3.10m

(d) 6.00m ?

How would the answer differ if the sphere were (e) a thin shell , or (f) a solid nonconductor uniform . . . continues
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Electrostatics
433 High school A 15.0cm diameter nonconducting sphere carries a total charge of 12.0 micro C . distributed uniformly throughout its volume . Graph the electric field E as a function of the distance r from the centre of the sphere from r = 0 to r = 30 cm . . . . continues
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Electrostatics
434 High school How much work is needed to move a -7.0 microC charge from ground to a point whose potential is +6.00 V higher ? . . . continues
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Electrostatics
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