Exercise 27.16 Assume that the electron at point A in the figure is replaced with a proton(Figure 1). The proton has a speed vo of 1.20x106 m/s Part A Find the magnitude of the magnetic field that will cause the proton to follow the semicircular path from A to B. B= 1.36 10-4 T Figure < 1 of 1> Submit Previous Answers Request Answer X Incorrect; Try Again; 5 attempts remaining Part B Find the direction of the magnetic field that will cause the proton to follow the semicircular path from A to B O out of the page K 10.0 cm O into the page 84'F O Type here to search
Exercise 27.16 Assume that the electron at point A in the figure is replaced with a proton(Figure 1). The proton has a speed vo of 1.20x106 m/s Part A Find the magnitude of the magnetic field that will cause the proton to follow the semicircular path from A to B. B= 1.36 10-4 T Figure < 1 of 1> Submit Previous Answers Request Answer X Incorrect; Try Again; 5 attempts remaining Part B Find the direction of the magnetic field that will cause the proton to follow the semicircular path from A to B O out of the page K 10.0 cm O into the page 84'F O Type here to search
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Transcribed Image Text:Exercise 27.16
Assume that the electron at point A in the figure is replaced
with a proton(Figure 1). The proton has a speed vo of
1.20x106 m/s
Part A
Find the magnitude of the magnetic field that will cause the proton to follow the semicircular path from A to B.
Hνα ΑΣφ
B = 1.36 • 10-4
T
Figure
< 1 of 1
Submit
Previous Answers Request Answer
X Incorrect; Try Again; 5 attempts remaining
Part B
Find the direction of the magnetic field that will cause the proton to follow the semicircular path from A to B
• B
O out of the page
10.0 cm
O into the page
84'F
A O E a
O Type here to search

Transcribed Image Text:Part C
Find the time required for the proton to move from A to B.
ν ΑΣφ
t =
Submit
Request Answer
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