B(1) 4.00 cm $(1) The figure above shows the side view of a circular loop w/ radius 4.00 cm. The loop is immersed in a time-varying magnetic field of B(t) = (5.1T/s)t and it is rotating in the direction shown making the angle between the magnetic field and the area vectors to be also time-dependent, i.e. (t) = (6.7rad/s)t. What is the induced emf (in V) at time t = %3D 1.73s.

Physics for Scientists and Engineers: Foundations and Connections
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Chapter31: Gauss’s Law For Magnetism And Ampère’s Law
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Note: 0.09458V  and 0.03457V are incorrect. 

B(1)
4.00 cm
$(1)
*ス
The figure above shows the side view of a circular loop w/ radius 4.00 cm. The
loop is immersed in a time-varying magnetic field of B(t) = (5.1T/s)t and it is
rotating in the direction shown making the angle between the magnetic field and
the area vectors to be also time-dependent, i.e. p(t) = (6.7rad/s)t. What is the
induced emf (in V) at timet = 1.73s.
Transcribed Image Text:B(1) 4.00 cm $(1) *ス The figure above shows the side view of a circular loop w/ radius 4.00 cm. The loop is immersed in a time-varying magnetic field of B(t) = (5.1T/s)t and it is rotating in the direction shown making the angle between the magnetic field and the area vectors to be also time-dependent, i.e. p(t) = (6.7rad/s)t. What is the induced emf (in V) at timet = 1.73s.
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