General Physics, 2nd Edition
General Physics, 2nd Edition
2nd Edition
ISBN: 9780471522782
Author: Morton M. Sternheim
Publisher: WILEY
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Chapter 20, Problem 57E
To determine

To show that i=if(1et/TL) is a correct solution for iRLdidt+ε=0 .

Expert Solution & Answer
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Answer to Problem 57E

It is showed that i=if(1et/TL) is a correct solution for iRLdidt+ε=0 .

Explanation of Solution

Write the equation of the circuit.

    iRLdidt+ε=0        (I)

Here, i is the current, R is the resistance, L is the inductance, di1dt is the rate of change of current and ε is the EMF.

Write the given solution for the current.

  i=if(1et/TL)        (II)

Here, if is the final current and TL is the time constant.

Take the time derivative of equation (II).

  didt=difdt+ddt(ifet/TL)=0+(if)et/TL(1TL)=ifTLet/TL        (III)

Write the equation for the final current.

  if=εR        (IV)

Put equation (IV) in equation (II).

  i=εR(1et/TL)        (V)

Put equation (IV) in equation (III).

  didt=(εR)TLet/TL=εRTLet/TL        (VI)

Put equations (V) and (VI) in equation (I).

  εR(1et/TL)RLεRTLet/TL+ε=0ε+εet/TLLεRTLet/TL+ε=0εet/TLLεRTLet/TL=0        (VII)

Write the equation for the time constant.

  TL=LR

Put the above equation in the second term on the left hand side of equation (VII).

  εet/TLLεR(LR)et/TL=0εet/TLLεRet/TLRL=0εet/TLεet/TL=0

The left hand side of the equation is equal to the right hand side so that the solution is correct.

Conclusion:

Therefore, it is showed that i=if(1et/TL) is a correct solution for iRLdidt+ε=0 .

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Chapter 20 Solutions

General Physics, 2nd Edition

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