The electric field in a region is radially outward with mag- nitude E = ar. Calculate the charge contained in a sphere of radius R centered at the origin. Calculate the value of charge if a = 100 V/m² and R = 0.30 m. R HULL. I Fig. 2.60 dr C
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- a) A very long (almost infinitely long) cylindrical wire of radius R carries a uniform charge density Po. Find the line charge density. Find the electric field inside and outside the wire. b) If a long cylindrical cavity of radius b is created at a distance a in the wire maintaining same charge density as part (a) (see Fig. 2). Find the line charge density. Find the electric field inside the cylindrical cavity. 01 Fig. 2signment valu A pair of parallel conducting plates are given charges of equal magnitude but opposite sign to create a uniform electric field with magnitude 26 N/C. A rectangular surface with dimensions 4.6 cm x 2.2 cm is located in the gap between the parallel plates. Part (a) N-m²/C What is the magnitude of the electric flux, in newton squared meters per coulomb, through the rectangular surface if it is parallel to the charged plates? |DE| = || sin() cotan() cos() tan() 8 9 HOME Grade Summary Deductions Potential Submissions 0% 100% Attempt(s) Remaining: 3 asin() acos(). E^^4 5 6 atan() acotan() sinh() cosh() tanh() cotanh() O Degrees 4% Deduction per Attempt detailed view 12 3 + - 0 END Radians VO BACKSPACE DEL CLEAR Submit Hint Feedback I give up! Submission(s) Remaining Hints: 4% deduction per hint. Hints remaining: 1 Feedback: 5% deduction per feedback. Part (b) What is the magnitude of the electric flux, in newton squared meters per coulomb, through the rectangular surface if it…needs complete typed solution with 100 % accuracy.
- The following charges are located inside a submarine: 3.10 μC, -9.00 μC, 27.0 μC, and -61 µC. (a) Calculate the net electric flux through the hull of the submarine. N.m²/c (b) Is the number of electric field lines leaving the submarine greater than, equal to, or less than the number entering it? greater than equal to less thanNeed this with explanationFollowing the previous question, the x-component of the net electric field at x = -1.00 m, Enet.x , is N/C. Use normal format and 3 significant figures.
- Consider the following figure. (If you need to use co or -o, enter INFINITY or -INFINITY, respectively.) (a) Find the total electric field in N/C at x = 8.00 cm in part (b) of the figure above given that q = 1.00 uC. N/C (b) Find the total electric field in N/C at x = 11.50 cm in part (b) of the figure above. (Include the sign of the value in your answer.) N/C (c) If the charges are allowed to move and eventually be brought to rest by friction, what will the final charge configuration be? (That is, will there be a single charge, double charge, etc., and what will its value(s) be? Use the following as necessary: q.)Problem 10 A sphere has a constant interior charge density p. What is the electric field for all values of r? Inside and outside? Plot the strength of the electric field as a function of r.can you answer all parts please