Review 91 = -5.70 C g2 = 2.70 μC 1 μC = 106C use k = 9.00 x 10/(m2 c) for the Coulomb Constant. Make sure the angle setting in your calculator is "Degree". sin 30º = 0.5 Before putting any charge at Origin, the configuration is shown in (Figure 1) 91 = -5.70 4C 92 = 2.70 MC 1 4C = 106 C use k = 9.00 x 10°N/(m2c2 for the Coulomb Constant. di = 0.320 m angle a = 21° d2 = 0.220 m d = 0.320 m 3 =21 ° do = 0.220 m Part A - Calculate the magnitude of the electric FIELD at the origin by charge q1. REO Use scientific notation answer format: 1.2345-10. unit is Newton/Coulomb N/C, NO NEED to enter unit. View Available Hint(s) magnitude E1 = 5.0098x105 N/C Submit Previous Answers Correct Term 1: Correct answer is shown. Your answer 5.00976-100= 5.00976x105 N/C was either rounded differently or used a different number of significant figures than required for this part. Important: If you use this answer in later parts, use the full unrounded value in your calculations. Part B - What is the direction of the electric FIELD at the origin BY charge q1? Report the direction by a COUNTERCLOCKWISE angle from the +x axis. Round to an integer. direction of Ē1 = 339 counterclockwise from the +1-axis Submit Previous Answers Figure < 1 of 2 Correct Important: If you use this answer in later parts, use the full unrounded value in your calculations. 924 1ty
n Review Part C - Calculate the magnitude of the electric FIELD at the origin by charge q2. 91 = -5.70 C 42 = 2.70 μC 1 μC 10-6 C use k = 9.00 x 109N/(m2 c2) for the Coulomb Constant. View Available Hint(s) d2 = magnitude E2 = 5.0207x105 N/C di = 0.320 m a = 21 0.220 m Submit Previous Answers Correct Correct answer is shown. Your answer 502066 N/C was either rounded differently or used a different number of significant figures than required for this part. Important: If you use this answer in later parts, use the full unrounded value in your calculations. - Part D - What is the direction of the electric FIELD at the origin created BY charge q2? Report the direction by a COUNTERCLOCKWISE angle from the +x axis. Round to an integer. direction of Ē2 = 291 "counterclockwise from the +-axis = Submit Previous Answers Correct Important: If you use this answer in later parts, use the full unrounded value in your calculations.
Review You will find the magnitude and the direction of the NET electric FIELD at the origin (created by charges q1 and 42), 91 = -5.70 4C 92 = 2.70 μC 1 μC 10-6C use k = 9.00 x 10 N/(m2 c2) for the Coulomb Constant. - Part E. What is the x component of the NET electric FIELD at the origin (created by charges q1 and q2)? dj = 0.320 m a = 21° d2 = 0.220 m Pay attention to the grading policy of using or not using "hints" View Available Hint(s) Templates Vado ředo reset keyboard shortcuts Symbols help Enetx component = 32257.46 N/C Submit Previous Answers * Incorrect; Try Again; 3 attempts remaining - Part F- What is the y component of the NET electric FIELD at the origin (created by charges q1 and q2)? Pay attention to the grading policy of using or not using "hints" View Available Hint(s) Templates undo redo reslet Symbols keyboard shortcuts help? Eney component = N/C Submit
Review Part G - Find the magnitude of the NET electric FIELD at the origin (created by charges q1 and q2). 91 = -5.70 uc 92 = 2.70 uC 1 uc 10-6C use k = 9.00 x 109N/(m2 c2) for the Coulomb Constant. V Templates O dj = 0.320 m a = 21 0.220 m d2 = uodo redo reslet keyboard shortcuts help? Symbols Enet N/C magnitude = Submit Request Answer Part H - Find the direction of the NET electric FIELD at the origin (created by charges q1 and q2) Report the direction by a COUNTERCLOCKWISE angle from the +x axis. Round to an integer. V uado ředo reset templates keyboard shortcuts Symbols help Ēnedirection counterclockwise from the +x-axis Submit Request Answer
m Review Part - Find the direction of the NET electric FIELD at the origin (created by charges q1 and 42) 91 = -5.70 C 92 = 2.70 μC 1 μC = 10-6 C use k = 9.00 x 10N/(m2c2) for the Coulomb Constant Report the direction by a COUNTERCLOCKWISE angle from the +x axis. Round to an integer. dj = 0.320 m 0.220 m a = 21° d2 = Temp@es uado redo reset keyboard shortcuts Symbols help Énedirection counterclockwise from the +-axis Submit Request Answer Now put a NEGATIVE point charge q = -1.40 PC at origin O. Complete comfiguration is shown in (Figure 2) Part 1 - What is the magnitude of the NET electric FORCE on charge q? use format 1.2345, unit is Newton, No need to enter unit. Templates uado redo reset Symbols keyboard shortcuts help, magnitude Fnet on = N Submit Request Answer - Part J - Find the direction of the NET electric FORCE on NEGATIVE charge q? Report the direction by a COUNTERCLOCKWISE angle from the +x axis. Round to an integer. Templates uado redo reset Figure 1 of 2 Symbols keyboard shortcuts help Fneon direction = counterclockwise from the +-axis 92 + Submit Request Answer a. di +x 91 Provide Feedback Next
Review 91 = -5.70 C g2 = 2.70 μC 1 μC = 106C use k = 9.00 x 10/(m2 c) for the Coulomb Constant. Make sure the angle sett
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Review 91 = -5.70 C g2 = 2.70 μC 1 μC = 106C use k = 9.00 x 10/(m2 c) for the Coulomb Constant. Make sure the angle sett
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