) Two electric charges, q, and q2 lie on the x-axis at positions of + 10 cm and - 10cm, respectively. What is the force on a third charge q3 that is placed at x = 0, if q1 = 10 µC, q2 = -10 µC and q3 = 20 µC? T00 918 mSTgaib

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is
a.) Two electric charges, q, and q2 lie on the x-axis at positions of + 10 cm and
- 10cm, respectively. What is the force on a third charge q3 that is placed at
x = 0, if q1 = 10 µC, q2 = -10 µC and q3 = 20 µC?00 918 mSTgaib
b.) An electron enters a uniform magnetic field whose magnitude is 1.5 T and
direction is parallel to the +z-axis. If the electron's velocity is A (B (05).A
2.0 i – 3.0 j+1.0 k m/s what is the force on the electron? D 92
c.) The magnet in the diagram is moved to the left. Copy the diagram into your
blue book and indicate the direction of the induced electric current, which you
should find using Lenz's Law. What is the situation some time later, when the
magnet has stopped moving? Explain your answers.gisa nidı A (.d
obingem odi nol noiz2e erlt bnit of wsJ
blet sdto sbuingem odt otsulsv brs iw
Transcribed Image Text:is a.) Two electric charges, q, and q2 lie on the x-axis at positions of + 10 cm and - 10cm, respectively. What is the force on a third charge q3 that is placed at x = 0, if q1 = 10 µC, q2 = -10 µC and q3 = 20 µC?00 918 mSTgaib b.) An electron enters a uniform magnetic field whose magnitude is 1.5 T and direction is parallel to the +z-axis. If the electron's velocity is A (B (05).A 2.0 i – 3.0 j+1.0 k m/s what is the force on the electron? D 92 c.) The magnet in the diagram is moved to the left. Copy the diagram into your blue book and indicate the direction of the induced electric current, which you should find using Lenz's Law. What is the situation some time later, when the magnet has stopped moving? Explain your answers.gisa nidı A (.d obingem odi nol noiz2e erlt bnit of wsJ blet sdto sbuingem odt otsulsv brs iw
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