(6) Problem 15: A loop of wire with radius 0.075 m is placed in a region of uniform malmetic field with magnitude B. As

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answerhappygod
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(6) Problem 15: A loop of wire with radius 0.075 m is placed in a region of uniform malmetic field with magnitude B. As

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6 Problem 15 A Loop Of Wire With Radius 0 075 M Is Placed In A Region Of Uniform Malmetic Field With Magnitude B As 1
6 Problem 15 A Loop Of Wire With Radius 0 075 M Is Placed In A Region Of Uniform Malmetic Field With Magnitude B As 1 (15.45 KiB) Viewed 53 times
6 Problem 15 A Loop Of Wire With Radius 0 075 M Is Placed In A Region Of Uniform Malmetic Field With Magnitude B As 2
6 Problem 15 A Loop Of Wire With Radius 0 075 M Is Placed In A Region Of Uniform Malmetic Field With Magnitude B As 2 (41.57 KiB) Viewed 53 times
(6) Problem 15: A loop of wire with radius 0.075 m is placed in a region of uniform malmetic field with magnitude B. As shown in the figure, the field direction is perpendicular to the pline of the loop. The magnitude of the magnetic field changes at a constant rate from B 0.15 T 16 B, Tintime At The resistance of the wire is R1 anled

A 13%. Part(a) Enter an expression for the magnitude of the magnetic flux through the loop using the symbols in the palette below. Your expression must be valid at all times described in the problem statement Grade Summary Deductions 07 Potential 10096 At EO 7 8 9 Submissions HO 4 516 Attempts remaining: B B 1 45 per attempt 2 3 detailed view B 0 R VO Submit Hint Hits deduction per hit Heming Feedbacks 25 deduction per feedback & 1396 Part (b) Enter an expression for the change in the magnitude of the magnetic flux through the loop using the symbols in the palette below. 13 Part() Calculate the numerical value in testa square meters of the change in the magnitude of the flux A 13% Part (d) Enter in expression for the magnitude of the induced om in the loop using the symbols in the palette HA 13 Parte) Calculate, in volts, the numerical value of the magnitude of the eml. 139 Part (0) Enter an expression for the magnitude of the current induced in the loop using the symbols in the palette. WA 1396 Part (1) Calculate the numerical value in amperes, of the magnitude of the induced current 134 Part() If you are looking down at the loop from above, so that the magnetic field is directed towards you, what is the direction of the induced current?
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