The current in the 8.00-2 resistor in the drawing is 0.513 A. Find the current in (a) the 20.0-2 resistor and in (b) the 9.00-2 resistor. 8.00 Ω www (a) Number i (b) Number i Units Units 16.0 22 www 9.00 Ω www 18.02 wwwww 20.092 www
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- A 12.0-V emf automobile battery has a terminal voltage of 16.0 V when being charged by a current of 10.0 A. (a) What is the battery’s internal resistance? (b) What power is dissipated inside the battery? (c) At what rate (in °C/min ) will its temperature increase if its mass is 20.0 kg and it has a specific heat of 0.300 kcal/kg • °C, assuming no heat escapes?35. The circuit in Figure P27.35 has been connected for several seconds. Find the current (a) in the 4.00-V battery, (b) in the 3.00-N resistor, (c) in the 8.00-V battery, and (d) in the 3.00-V battery. (e) Find the charge on the capacitor. 5.00 N 3.00 V. 8.00 V 3.00 n 4.00 V + 6.00 μΕ 5.00 N I=0 Figure P27.35The current in the 8.00-Q resistor in the drawing is 0.654 A. Find the current in (a) the 20.0-0 resistor and in (b) the 9.00-Q resistor. 8.00 22 (a) Number i (b) Number i Units Units 16.02 www 9.00 £2 www 18.092 +F 20.01 www
- SN 10. A 11.0 μF capacitor is connected in series to a 50.0-V battery, a is flowing through the resistor, 5.00 ms after closing the switch? Amp resistor, and a switch. What is the current that 550-52 resis 0 ssf60 ssf60 ss. 50 ssf602o2 3052 352 552 652 2A A. The power dissipated in the 3 Ohms resistor is W. B. The total voltage is V. C. The power dissipated in the 5 Ohms resistor is W. Round all answers to whole numbers.E = 60.0 V, r=0 2. The circuit in the figure on the right shows a network of resistors connected in series and in parallel. 3.00N 12.00 (a) Determine the total resistance of the network. (b) What is the current through the 3.00-0? ww 6.00 n 4.00 n
- = 8. Find the current in the R₁ resistor in the drawing (V₂ = 16.0 V, V3 S). ssfox's f60 A 0 ss160 ssf60 ss160 ss160 W 500 f60 ssf60 ssf60 ssf60 ssf60 ssin ssf60 ssfoo www R3 ww R₂ V3 ssf60 st sf60 1.702, R₂ 2.00 , and R3 18.0 V, R₁ = *J$$:09J$$ (9J$/ 091797 = 2.20 ssf60 ssf60 ssf60 0 ssf60 ssf60 ssf60 ssf60 ssf6013. Calculate the power delivered to each resistor in the circuit V shown in Figure P27.13 2.00 0 18.0 V 3.00n 1.00 4.00 n Figure P27.13The emfs in the figure below are &₁=5.00 V and ₂ = 18.0 V. The resistances are R₁ = 17.50, R₂ = 31.00, R₂ = 46.00, and R4 = 57.0 02. Find the magnitude of the current in each resistor when the switch is in the following states. R₂ (a) open 41 -0.19047 12 = 0.19047 13 = 0.19047 ✔A ✔A ✔A ✔A ww R₁ en (b) closed ₁0.1798 x Your response differs from the correct answer by more than 10%. Double check your calculations. A 0.1929 x 1₂ Your response is within 10% of the correct value. This may be due to roundoff error, or you could have a mistake in your calculation. Carry out all intermediate results to at least four-digit accuracy to minimize roundoff error. A Read It 0.1929 13 Your response is within 10% of the correct value. This may be due to roundoff error, or you could have a mistake in your calculation. Carry out all intermediate results to at least four-digit accuracy to minimize roundoff error. A 14 0.0131 X =Your response differs from the correct answer by more than 10%. Double check…
- Calculate the equivalent resistance across a and b and the current and voltage across the 92 resistor. I3 Answer: 6.00 N 2.40 N I5 V9n=1.8 V I9n=2 A 15.0 V 6.00 N 6.00 N b' 6.00 Q 9.00 N7. = R2 = R3 = 1.58 N, R4 = 14.9 N, R5 = 7.40 N, and R6 = 3.49 N. What is the emf - V of the ideal battery? In the figure the current in resistance 6 is i6 = 1.36 A and the resistances are R1 R R2 R, RA i6 Ro (d) 36.7 (e) None of the above (a) 40.6 (b) 38.8 (c) 42.3The current in the 8.00-2 resistor in the drawing is 0.555 A. Find the current in (a) the 20.0-2 resistor and in (b) the 9.00- resistor. 8.00 Ω www (a) Number (b) Number i Units Units 19 + 16.0 2 www 9.00 $2 www 18.0 2 wwwww 20,0 12 www