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Chapter 31, Problem 18P

(a)

To determine

To show: The equivalent inductance is Leq=L1+L2 .

(b)

To determine

To show: The equivalent inductance in parallel combination is 1Leq=1L1+1L2 .

(c)

To determine

To show: The equivalent inductance and resistance when their internal resistance is non zero in series combination is Leq=L1+L2 and Req=R1+R2 respectively.

(d)

To determine

Whether it is necessarily true that they are equivalent to a single ideal inductor having 1Leq=1L1+1L2 and 1Req=1R1+1R2 .

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Two ideal inductors, L1 and L2, have zero internal resistance and are far apart, so their magnetic fields do not influence each other. (a) Assuming these inductors are connected in series, show that they are equivalent to a single ideal inductor having Leq = L1 + L2. (b) Assuming these same two inductors are connected in parallel, show that they are equivalent to a single ideal inductor having 1/Leq = 1/L1 + 1/L2. (c) What If? Now consider two inductors L1 and L2 that have nonzero internal resistances R1 and R2, respectively. Assume they are still far apart, so their mutual inductance is zero, and assume they are connected in series. Show that they are equivalent to a single inductor having Leq = L1 + L2 and Req = R1 + R2. (d) If these same inductors are now connected in parallel, is it necessarily true that they are equivalent to a single ideal inductor having 1/Leq = 1/L1 + 1/L2 and 1/Req = 1/R1 + 1/R2? Explain your answer.
Inductors in parallel. Two inductors L1 = 1.05 H and L2 = 2.01 H are connected in parallel and separated by a large distance so that the magnetic field of one cannot affect the other. (a) Calculate the equivalent inductance. (Hint: Review the derivations for resistors in parallel and capacitors in parallel.Which is similar here?) (b) What is the generalization of (a) for N = 10 similar inductors L = 3.06 H in parallel?
Inductors in series. Two inductors L1 = 1.06 H and L2 = 2.07 H are connected in series and are separated by a large distance so that the magnetic field of one cannot affect the other. (a) Calculate the equivalent inductance. (Hint: Review the derivations for resistors in series and capacitors in series.Which is similar here?) (b) What is the generalization of (a) for N = 32 similar inductors L = 3.32 H in series

Chapter 31 Solutions

Bundle: Physics For Scientists And Engineers With Modern Physics, Loose-leaf Version, 10th + Webassign Printed Access Card For Serway/jewett's Physics For Scientists And Engineers, 10th, Single-term

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