À rectangular loop of wire of length 10.0 cm and width 4.0 cm is placed just beyond and perpendicular to a magnetic field of 2.00 T. Calculate the magnitude of the induced emf across segment a-b (see diagram below) of the loop: a) if the loop is dragged horizontally through the field so that half the loop is within the field in 0.25 s b) after 0.50 s. B = 2.00 T k = 100 crn w = 4,0 cm i = 15.0 ct Loop a

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Chapter1: Units, Trigonometry. And Vectors
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Answer the following each with easy explanation and complete solution Subject:physics
1. A rectangular loop of wire of length 10.0 cm and width 4.0 cm is placed just
beyond and perpendicular to a magnetic field of 2.00 T. Calculate the magnitude
of the induced emf across segment a-b (see diagram below) of the loop:
a) if the loop is dragged horizontally through the field so that half the loop
is within the field in 0.25 s
b) after 0.50 s.
B = 200 T
k = 100 cn
W = 4.0 cm
Loop
i= 15.0 c!
----- :
Transcribed Image Text:1. A rectangular loop of wire of length 10.0 cm and width 4.0 cm is placed just beyond and perpendicular to a magnetic field of 2.00 T. Calculate the magnitude of the induced emf across segment a-b (see diagram below) of the loop: a) if the loop is dragged horizontally through the field so that half the loop is within the field in 0.25 s b) after 0.50 s. B = 200 T k = 100 cn W = 4.0 cm Loop i= 15.0 c! ----- :
sample
m-polatized light
detector
polatizer 1
polatizet 2
Two polarized films are rotated with respect to each other by 90 degrees, so no light
goes through them. Then a sample of crystal is put between two films. The sample
rotates the axis of polarization by 3 degrees, without any loss of intensity. Find the
fraction of the original intensity that is defected with the sample in place.
Transcribed Image Text:sample m-polatized light detector polatizer 1 polatizet 2 Two polarized films are rotated with respect to each other by 90 degrees, so no light goes through them. Then a sample of crystal is put between two films. The sample rotates the axis of polarization by 3 degrees, without any loss of intensity. Find the fraction of the original intensity that is defected with the sample in place.
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