4) Qi = -2.5µC is at (-3, 2) & Q2 = -3.2µC Q2 is at (1, 4). The %3D coordinates are in meters. Calculate: a) The net electric field at the origin (both magnitude & direction). b) The electric potential at the origin. Q1 c) The acceleration of an electron placed at the origin (both magnitude & direction). d) The speed of the electron when it is very far away.

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Chapter7: Electric Potential
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Problem 61P: Two large charged plates of charge density 30C/m2 face each other at a separation of 5.0 mm. (a)...
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Can you please answer all of the 4 questions

4) Q1 =-2.5µC is at (-3, 2) & Q2 = -3.2µC Q2 is at (1, 4). The
coordinates are in meters. Calculate:
a) The net electric field at the origin (both magnitude & direction).
b) The electric potential at the origin.
c) The acceleration of an electron placed at the origin (both
magnitude & direction).
d) The speed of the electron when it is very far away.
Transcribed Image Text:4) Q1 =-2.5µC is at (-3, 2) & Q2 = -3.2µC Q2 is at (1, 4). The coordinates are in meters. Calculate: a) The net electric field at the origin (both magnitude & direction). b) The electric potential at the origin. c) The acceleration of an electron placed at the origin (both magnitude & direction). d) The speed of the electron when it is very far away.
4) Q1 =-2.5µC is at (-3, 2) & Q2 = -3.2µC Q2 is at (1, 4). The
coordinates are in meters. Calculate:
a) The net electric field at the origin (both magnitude & direction).
b) The electric potential at the origin.
c) The acceleration of an electron placed at the origin (both
magnitude & direction).
d) The speed of the electron when it is very far away.
Transcribed Image Text:4) Q1 =-2.5µC is at (-3, 2) & Q2 = -3.2µC Q2 is at (1, 4). The coordinates are in meters. Calculate: a) The net electric field at the origin (both magnitude & direction). b) The electric potential at the origin. c) The acceleration of an electron placed at the origin (both magnitude & direction). d) The speed of the electron when it is very far away.
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