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RESNICK AND HALLIDAY-CIRCUITS-Problems
- An isolated charged capacitor may gradually discharge as charge leaks ...
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- In Fig. 27-37, the ideal batteries have emfs epsi(1)= 12.0 V and = eps...
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- In Fig 27.37, epsi(1)=1.00V, epsi(2)=3.00 V, R(1)=4.00 Omega, R(2)=2.0...
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- In Fig. 27-38, two batteries with an emf epsi= 12.0 V and an internal ...
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- In Fig. 27-39, a voltmeter of resistance Rv= 300 Omega and ammeter of ...
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- In Fig. 27-40, R1= 100 Omega, R2=R3= 50.00Omega, R4 = 75.0 Omega, and ...
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- In Fig. 27-40, the resistors have the values R1= 700 Omega, R2 =12.0 O...
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- Figure 27-41 shows a battery connected across a uniform resistor R0. A...
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- In Fig. 27-42, the resistances are R1=3.00 Omega, R2= 700 Omega. and t...
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- A capacitor with an initial potential difference of 80.0 V is discharg...
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- In Fig. 27-43, the current in resistance 6 is i(6)= 2.80 A the resista...
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- In Fig. 27-44, epsi(1)=8.00 V, epsi(2)=12.0V, R(1)=100 Omega, R(2)=200...
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- In Fig. 27-45, assume that epsi= 3.0 V, r = 100 Omega, R(1)=250 22 and...
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- Switch S in Fig. 27-46 is closed at time t= 0, to begin charging an in...
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- In the circuit shown in Fig. 27-47, there is a cube of resistances whi...
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- Find the equivalent resistance of the network as shown in Fig 27.48 be...
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- An infinite ladder is constructed with 1 Omega and 2 Omega resistors a...
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- In Fig 27-50, epsi=24.0 V, R(1)=2000 Omega, R(2)=3000 Omega and R(3)=4...
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- In Fig. 27-51. battery 1 has emf epsi(1)= 12.0 V and internal resistan...
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- A capacitor with initial charge q0, is discharged through a resistor. ...
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