It requires External Work [Wext] of 4.67 X 10-6 J to move a Negative charge between two charged parallel plates which are connected to a 12.0-volt battery [AV]. Calculate the Negative charge's magnitude in microcoulombs [q], [μC}]. Which way does the Negative charge move: Positive to Negative or Negative to Positive? A test charge qo (-3.5 μC) is initially 0.650 m [₁] left of fixed charge Q (-8.5 μC). The test charge is pushed to the right, with constant velocity, until it is located 0.250 m [rg) left of charge Q. Calculate the External Work [W {J}] needed to move the charge. This problem is like Example #5 (pp. 9 and 10) in Chapter #18 notes. ext -90 ● A B Q Convert P# 3's answer to Electron Volts {eV). The conversion factor is given. on page 1 of Chapter 18 lecture notes.

Principles of Physics: A Calculus-Based Text
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Chapter20: Electric Potential And Capacitance
Section: Chapter Questions
Problem 77P
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It requires External Work [Wet 1 of 4.67 X 10-6 J to move a Negative
charge between two charged parallel plates which are connected to
a 12.0-volt battery [AV].
Calculate the Negative charge's magnitude in microcoulombs [9], {μc}].
Which way does the Negative charge move: Positive to Negative or
Negative to Positive?
A test charge qo (-3.5 µC) is initially 0.650 m [₁] left of fixed charge Q
(-8.5 μC). The test charge is pushed to the right, with constant velocity,
until it is located 0.250 m [rg) left of charge Q. Calculate the External
Work [W {J}] needed to move the charge. This problem is like Example #5
(pp. 9 and 10) in Chapter #18 notes.
ext
- 90
A
Convert P#3's answer to Electron Volts {eV). The conversion factor is given
on page 1 of Chapter 18 lecture notes.
Transcribed Image Text:It requires External Work [Wet 1 of 4.67 X 10-6 J to move a Negative charge between two charged parallel plates which are connected to a 12.0-volt battery [AV]. Calculate the Negative charge's magnitude in microcoulombs [9], {μc}]. Which way does the Negative charge move: Positive to Negative or Negative to Positive? A test charge qo (-3.5 µC) is initially 0.650 m [₁] left of fixed charge Q (-8.5 μC). The test charge is pushed to the right, with constant velocity, until it is located 0.250 m [rg) left of charge Q. Calculate the External Work [W {J}] needed to move the charge. This problem is like Example #5 (pp. 9 and 10) in Chapter #18 notes. ext - 90 A Convert P#3's answer to Electron Volts {eV). The conversion factor is given on page 1 of Chapter 18 lecture notes.
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