4. A potential difference of 24 volts is applied to the points A and B of a given circuit. Determine the electric field

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4. A potential difference of 24 volts is applied to the points A and B of a given circuit. Determine the electric field

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4 A Potential Difference Of 24 Volts Is Applied To The Points A And B Of A Given Circuit Determine The Electric Field 1
4 A Potential Difference Of 24 Volts Is Applied To The Points A And B Of A Given Circuit Determine The Electric Field 1 (46.88 KiB) Viewed 12 times
Can you answer question 5 show all units . I appreciate
your work in advance! Thank u
4. A potential difference of 24 volts is applied to the points A and B of a given circuit. Determine the electric field strength E inside of a capacitor (that is equivalent to the circuit in; all capacitances done in microF) which has a volume between plates of 3-cm³ and insulating material with dielectric constant equals to 2.7. SHOW ALL WORK! B 2.0 6.0 4.0 9.0 3,0 HH 8.0 10 5. Figure shows two positively charged particles qr and q: fixed in place on an X axis. The charges are q = +1.60 x10-19 C and g2=+3.20 x 10-1°C and the particle separation R = 0.030 m. Particle qs (the charge is - 3.20 x 10-19 C) is at a distance 0.75 R from particle 1 and lies on a line that makes an angle Q = 60° with the X axis. What is the VECTOR (magnitude and angle) of NET electrostatic force F1, net on the particle 1 due to the particles 2 and 3? SHOW ALL WORK! q1 X R 50=8.85 x 10¹ C²((N m²) 7,0
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