a. 3. Now you have an isolated system consisting of two charged species of the same sign. How do you think an electrostatic force would change with respect to distance between two charged species of the same sign? (Reflect back to the electric field hockey simulation if needed). X an g command N M b. Explain in words what is happening to the potential energy as the two charged species of the same sign move together. Why does the potential energy change in this way? c. After examining the axes below, now draw a graph to show how the potential energy of the system changes with distance between the two charged species of the same sign. (Hint: Where would objects at a great distance be located on your distance axis? This is the starting point.)

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter3: Atomic Shells And Classical Models Of Chemical Bonding
Section: Chapter Questions
Problem 7P
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a.
3. Now you have an isolated system consisting of two charged species of the same sign.
How do you think an electrostatic force would change with respect to distance
between two charged species of the same sign? (Reflect back to the electric field
hockey simulation if needed).
1
option
command
B
N
Potential energy
M
b. Explain in words what is happening to the potential energy as the two charged
species of the same sign move together. Why does the potential energy change in
this way?
c. After examining the axes below, now draw a graph to show how the potential
energy of the system changes with distance between the two charged species of
the same sign. (Hint: Where would objects at a great distance be located on your
distance axis? This is the starting point.)
Distance between charges (r)
Transcribed Image Text:a. 3. Now you have an isolated system consisting of two charged species of the same sign. How do you think an electrostatic force would change with respect to distance between two charged species of the same sign? (Reflect back to the electric field hockey simulation if needed). 1 option command B N Potential energy M b. Explain in words what is happening to the potential energy as the two charged species of the same sign move together. Why does the potential energy change in this way? c. After examining the axes below, now draw a graph to show how the potential energy of the system changes with distance between the two charged species of the same sign. (Hint: Where would objects at a great distance be located on your distance axis? This is the starting point.) Distance between charges (r)
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