A (1.215x10^O)-m radius cylindrical region contains a uniform electric field along the cylinder axis. It is increasing uniformly with time. What is the rate of change (magnitude) of the electric field required to obtain a total displacement current of (4.64x10^0) nA through a cross section of the region? Provide your answer in V/(m.s) with three significant figures.
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- A uniform electric field of 7.82 V/m west and a uniform magnetic field of 5.31 T west exist in a region of space. Find the magnitude of the acceleration of an electron moving with velocity 3.2 m/s north in this region. Answer in units of m/s2.Can you please answer d, e & f?Problem 2: An electric current I0.85 A is flowing in a long wire. Consider a rectangular area with one side parallel to the wire and at a distance 0.043 m away from the wire. Let the dimensions of the rectangle be a 0.024 m and b-0.057 m Part (a) Express the magnitude of the magnetic field generated by the wire B at a distance r in terms of I and r. B(r) Но 4 5 6 BACKSPAC CLEAR Submit Hint I give up! Hints: 1% deduction per hint. Hints remaining: 3 Feedback: 1% deduction per feedback. Part (b) Express the magnetic flux, ф, in the rectangle as an integral of B(r) A Part (c) Integrate the expression in part (b) 圖 Part (d) Calculate the numerical value of φ in T-m2.
- An electron has an initial velocity of (10.0j + 14.5k) km/s and a constant acceleration of (1.70×1012 m/s2)i in a region in which uniform electric and magnetic fields are present. If B =(400μT)i, find the electric field E. Ex? Ey? Ez?Question 9, chap 134, sect 4. part 1 of 1 10 points The cable is carrying the current I(t). Evaluate the electromagnetic energy flux S at the surface of a long transmission cable of resistivity p, length and radius a, using the expression 5 = EX B. 440 1. S = 2. S= 3. S= = 4. S= 7. S = 5. S= HOc12 4 π a² l 6. None of these. = PI² 2 π² a³ €0 με 12 2πα2 [2 8. S= 4πμocl Hо €0p 1² παλ πα? 12 pl но 12 2πα2Please write clearly
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