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Plot 1 in Fig. 25-32agives the charge qthat can be stored on capacitor 1 versus the electric potential Vset up across it. The vertical scale is set byqs=16.0μ°äand the horizontal scale is set byVs=2.0VPlots 2 and 3 are similar plots for capacitors 2 and 3, respectively. Figure bshows a circuit with those three capacitors and abattery. What is the charge stored on capacitor 2 in that circuit?

Short Answer

Expert verified

The charge stored on the capacitor 2 is q2=12μ°ä.

Step by step solution

01

Step 1: Given data

The vertical scale set is byqs=16μ°ä

The horizontal scale is set byVs=2V

The voltage across the battery is V = 6 V

02

Determining the concept

Capacitance is the ratio of charge to potential. So the slope of the charge versus the potential graph gives us the capacitance for each capacitor. Find the equivalent capacitance by using the formulae for series and parallel combinations. By using the formula for capacitance, find the charge stored by capacitor 2.

Formulae are as follows:

q = CV

For parallel combination,Ceq=∑j=1nCj

For series combination,1Ceq=∑j=1n1Cj

Where C is capacitance, V is the potential difference, q is the charge on the particle

03

Determining the charge stored on the capacitor

From the graph, find the slope of each line which will give us the capacitance for each capacitor.

It is given that,

q=CVC=qV

As the vertical scale set is by qs=16μ°äand the horizontal scale is set by Vs=2V.

Consider two points on the line 1:role="math" localid="1661753003473" P11,6andP22,12

C1=y2-y1x2-x1C1=12μ°ä-6μ°ä2V-1VC1=6μ¹ó

Now, consider two points on the line 2:P11,4andP22,8

C2=8μ°ä-4μ°ä2V-1VC2=4μ¹ó

Similarly, consider two points on the line 3: P11,2andP22,4

C3=4μ°ä-2μ°ä2V-1VC3=2μ¹ó

Using the formulae for the equivalent capacitance of series and parallel combinations, the total equivalent capacitance is given by,

1Ceq=1C1+1C2+C3

Substituting the values,

1Ceq=16μ¹ó+14μ¹ó+2μ¹ó1Ceq=16μ¹ó+16μ¹ó1Ceq=1236μ¹óCeq=3μ¹ó

The voltage across the capacitor is,

V1=CeqVC2+C3V1=3μ¹ó×6V4μ¹ó+2μ¹ó

The voltage across the capacitor 2 is,

V2=V-V1=6V-3V=3V

So, the charge on the capacitor 2 is given by,

q2=C2V2=4μ¹ó×3V=12μ°ä

Hence, the charge stored on the capacitor 2 isq2=12μ°ä

Therefore, by using the concept of capacitance, we found the charge stored on the capacitor 2.

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Most popular questions from this chapter

Figure 25-42 shows a 12 V battery and four uncharged capacitors of capacitances C1=1.00μ¹ó,C2=2.00μ¹ó,C3=3.00μ¹óand C4=4.00μ¹ó. If only switch S1is closed, (a) What is the charge on capacitor 1, (b) What is the charge on capacitor 2, (c) What is the charge on capacitor 3, and (d) What is the charge on capacitor 4? (e) If both switches are closed what is the charge on capacitor 1? (f) If both switches are closed what is the charge on capacitor 2? (g) If both switches are closed what is the charge on capacitor 3? (h) If both switches are closed what is the charge on capacitor 4?

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