41. Figure 7 below shows how the electric potential varies with distance in a certain region of space. From the graph above, it can be concluded that: V 10v 35 25 12 15 18 x /em 1 The magnitude of the electric field in the region described has a uniform magnitude of 3.33 x 10 NC. 2 The electric potential in the region increases by equal amounts in equal time intervals. 3 The area under the graph is equal to electrostatic force on unit electric charge in the region.

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DIRECTIONS SUMMARISED
A
B
C
D
1,2 only
2,3 only
1 only
3 only
Transcribed Image Text:DIRECTIONS SUMMARISED A B C D 1,2 only 2,3 only 1 only 3 only
41. Figure 7 below shows how the electric potential
varies with distance in a certain region of space.
From the graph above, it can be concluded that:
V 10V
35
25
12
15
18
x /em
1 The magnitude of the electric field in the region
described has a uniform magnitude of 3.33 x 10
NC.
2 The electric potential in the region increases by
equal amounts in equal time intervals.
3 The area under the graph is equal to electrostatic
force on unit electric charge in the region.
Transcribed Image Text:41. Figure 7 below shows how the electric potential varies with distance in a certain region of space. From the graph above, it can be concluded that: V 10V 35 25 12 15 18 x /em 1 The magnitude of the electric field in the region described has a uniform magnitude of 3.33 x 10 NC. 2 The electric potential in the region increases by equal amounts in equal time intervals. 3 The area under the graph is equal to electrostatic force on unit electric charge in the region.
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