Part A Two point charges q1 and q2 are held in place 4.50 cm apart. Another point charge -2.15 µC of mass 4.50 g is initially located 3.00 cm from each of these charges (the figure(Figure 1)) and released from rest. You observe that the initial acceleration of -2.15 µC is 354 m/s upward, parallel to the line connecting the two point charges. Find gi and q2 - Enter your answers in coulombs separated by a comma. ΑΣΦ a ха x•10" Figure 1 of 1 91, 92 = C Submit Previous Answers Request Answer X Incorrect; Try Again; 7 attempts remaining 4.50 cm Provide Feedback 92 國 -3.00 cm- -3.00 сm—
Part A Two point charges q1 and q2 are held in place 4.50 cm apart. Another point charge -2.15 µC of mass 4.50 g is initially located 3.00 cm from each of these charges (the figure(Figure 1)) and released from rest. You observe that the initial acceleration of -2.15 µC is 354 m/s upward, parallel to the line connecting the two point charges. Find gi and q2 - Enter your answers in coulombs separated by a comma. ΑΣΦ a ха x•10" Figure 1 of 1 91, 92 = C Submit Previous Answers Request Answer X Incorrect; Try Again; 7 attempts remaining 4.50 cm Provide Feedback 92 國 -3.00 cm- -3.00 сm—
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Transcribed Image Text:Two point charges q1 and q2 are held in place 4.50 cm
apart. Another point charge -2.15 µC of mass 4.50 g is
initially located 3.00 cm from each of these charges (the
figure(Figure 1)) and released from rest. You observe that
the initial acceleration of -2.15 µC is 354 m/s upward,
parallel to the line connecting the two point charges.
Part A
Find gi and q2 -
Enter your answers in coulombs separated by a comma.
xa
X•10n
X
Figure
1 of 1
91, 42 =
C
91
Submit
Previous Answers Request Answer
cm
X Incorrect; Try Again; 7 attempts remaining
4.50 cm
Provide Feedback
92
圓
國
K-3.00
-3.00 cm
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