How do you know two different types of charges exist? Please use your observations/evidence to support your reasonin Vector Applications A. B. Y axis Y oxis 7 uC 0.5 m 60 -Xaxis Xaxis -4 pC Three point charges of 2.00 µC, 7.00 µC, and-4.00 uC are located at the corners of an equilateral triangle as shown above in picture A. The two on the x-axis are in fixed positions. 1. In picture B, use trig and vector identities to calculate the x and y components of the displacement vector between the 2.00-uC charge and the 7.00-uC charge. 2. Draw a free-body diagram to show the electric forces exerted on the 7.00-uC charge and clearly indicate which object exerts each electric force on it, and in which direction. (Note: You are not being asked to calculate forces, but simply to draw the proper vectors.)

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Chapter5: Electric Charges And Fields
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Problem 101P: In this exercise, you practice electric field lines. Make sure you represent both the magnitude and...
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How do you know two different types of charges exist? Please use your observations/evidence
to support your reasonin
Vector Applications
A.
B.
Y axis
Y oxis
7 uC
0.5 m
60
-Xaxis
Xaxis
-4 pC
Three point charges of 2.00 µC, 7.00 µC, and-4.00 uC are located at the corners of an equilateral
triangle as shown above in picture A. The two on the x-axis are in fixed positions.
1. In picture B, use trig and vector identities to calculate the x and y components of the
displacement vector between the 2.00-uC charge and the 7.00-uC charge.
2. Draw a free-body diagram to show the electric forces exerted on the 7.00-uC charge and
clearly indicate which object exerts each electric force on it, and in which direction. (Note:
You are not being asked to calculate forces, but simply to draw the proper vectors.)
Transcribed Image Text:How do you know two different types of charges exist? Please use your observations/evidence to support your reasonin Vector Applications A. B. Y axis Y oxis 7 uC 0.5 m 60 -Xaxis Xaxis -4 pC Three point charges of 2.00 µC, 7.00 µC, and-4.00 uC are located at the corners of an equilateral triangle as shown above in picture A. The two on the x-axis are in fixed positions. 1. In picture B, use trig and vector identities to calculate the x and y components of the displacement vector between the 2.00-uC charge and the 7.00-uC charge. 2. Draw a free-body diagram to show the electric forces exerted on the 7.00-uC charge and clearly indicate which object exerts each electric force on it, and in which direction. (Note: You are not being asked to calculate forces, but simply to draw the proper vectors.)
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