Figure 25-33 shows a circuit section of four air-filled capacitors that is connected to a larger circuit. The graph below the section showsthe electric potential V ( x ) as a function of position x along the lowerpart of the section, through capacitor 4. Similarly, the graph above the section shows the electric potential V ( x ) as a function of position x alone the upper part of the section, through capacitors 1.2. and 3. Capacitor 3 has a capacitance of 0.80 μ F. What are the capacitances of (a) capacitor 1 and (b) capacitor 2? Figure 25-33 Problem 18.
Figure 25-33 shows a circuit section of four air-filled capacitors that is connected to a larger circuit. The graph below the section showsthe electric potential V ( x ) as a function of position x along the lowerpart of the section, through capacitor 4. Similarly, the graph above the section shows the electric potential V ( x ) as a function of position x alone the upper part of the section, through capacitors 1.2. and 3. Capacitor 3 has a capacitance of 0.80 μ F. What are the capacitances of (a) capacitor 1 and (b) capacitor 2? Figure 25-33 Problem 18.
Figure 25-33 shows a circuit section of four air-filled capacitors that is connected to a larger circuit. The graph below the section showsthe electric potential V(x) as a function of position x along the lowerpart of the section, through capacitor 4. Similarly, the graph above the section shows the electric potential V(x) as a function of position x alone the upper part of the section, through capacitors 1.2. and 3. Capacitor 3 has a capacitance of 0.80 μF. What are the capacitances of (a) capacitor 1 and (b) capacitor 2?
Two-point charges of 5.00 µC and -3.00 µC are placed 0.250 m apart.a) What is the electric force on each charge? Include strength and direction and a sketch.b) What would be the magnitude of the force if both charges are positive? How about the direction?
c) What will happen to the electric force on each piece of charge if they are moved twice as far apart? (Give a numerical answer as well as an explanation.)
y[m]
The figure shows two snapshots of a single wave on a string. The wave is
traveling to the right in the +x direction. The solid line is a snapshot of the wave
at time t=0 s, while the dashed line is a snapshot of the wave at t=0.48s.
0
0.75
1.5
2.25
3
8
8
6
6
4
2
4
2
0
-2
-2
-4
-4
-6
-6
-8
-8
0
0.75
1.5
2.25
3
x[m]
Determine the period of the wave in units of seconds.
Enter your numerical answer below including at least 3 significant figures. Do
not enter a fraction, do not use scientific notation.
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How To Solve Any Circuit Problem With Capacitors In Series and Parallel Combinations - Physics; Author: The Organic Chemistry Tutor;https://www.youtube.com/watch?v=a-gPuw6JsxQ;License: Standard YouTube License, CC-BY