A power of 100 W is delivered to a certain resistor when the applied voltage is 100 V. Find the resistance. Suppose that the voltage is reduced by 10 percent (to 90 V). By what percentage is the power reduced? Assume that the resistance remains constant.
A power of 100 W is delivered to a certain resistor when the applied voltage is 100 V. Find the resistance. Suppose that the voltage is reduced by 10 percent (to 90 V). By what percentage is the power reduced? Assume that the resistance remains constant.
Solution Summary: The author explains the value of resistance and the change in the percentage of power.
A power of 100 W is delivered to a certain resistor when the applied voltage is 100 V. Find the resistance. Suppose that the voltage is reduced by 10 percent (to 90 V). By what percentage is the power reduced? Assume that the resistance remains constant.
In the figure the current in resistance 6 is ig = 1.40 A and the resistances are R1 = R2 =R3 = 1.56 Q, R4 = 17.2 Q, R5 = 8.65 0, and R, =
3.88 Q. What is the emf of the ideal battery?
R
R
R,
R4
16
Number
i
Units
V
3. The figure on the left below shows a schematic diagram of a battery. The voltage measured by
U1 is called the terminal voltage given R1 = 1 ohm. In the figure on the right below, the terminal
voltage of each of the battery-resistor combination is Vr = 1.5 volts. Find the following:
a. The current passing through R5.
b. The currents passing through R1 and R3
C. The voltage across R1.
d. The voltage of the battery EMF.
e. The percentage of voltage loss ot the battery due to the internal resistance R1.
The power dissipated by the internal resistance R1.
g. The power dissipated by R5 if R1 = R2 = R3 = R4 = 0.
h. The percentage of power dissipation loss due to the four resistors R1, R2, R3, and R4
f.
R1
R3
S10
R1
U1
1.500
EMF
EMF
R5
100
V1
R2
$10
EMF
R4
EMF
EMF
Fast please...
Chapter 1 Solutions
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