In which 120-V light bulb does the filament have greater resistance: a 60-W bulb or a 120-W bulb? If the two bulbs are connected to a 120-V line in series, through which bulb will there be the greater voltage drop? What if they are connected in parallel? Explain your reasoning
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Textbook Solutions for University Physics with Modern Physics (1)
Question
You set up the circuit shown in Fig. 26.22a, where R = 196 . You close the switch at time t = 0 and measure the magnitude i of the current in the resistor R as a function of time t since the switch was closed. Your results are shown in Fig. P26.80, where you have chosen to plot ln i as a function of t. (a) Explain why your data points lie close to a straight line. (b) Use the graph in Fig. P26.80 to calculate the capacitance C and the initial charge Q0 on the capacitor. (c) When i = 0.0500 A, what is the charge on the capacitor? (d) When q = 0.500 * 10-4 C, what is the current in the resistor?
Solution
The first step in solving 26 problem number 101 trying to solve the problem we have to refer to the textbook question: You set up the circuit shown in Fig. 26.22a, where R = 196 . You close the switch at time t = 0 and measure the magnitude i of the current in the resistor R as a function of time t since the switch was closed. Your results are shown in Fig. P26.80, where you have chosen to plot ln i as a function of t. (a) Explain why your data points lie close to a straight line. (b) Use the graph in Fig. P26.80 to calculate the capacitance C and the initial charge Q0 on the capacitor. (c) When i = 0.0500 A, what is the charge on the capacitor? (d) When q = 0.500 * 10-4 C, what is the current in the resistor?
From the textbook chapter Direct-current circuits you will find a few key concepts needed to solve this.
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