3. The figure below shows a thin rod of length L with total charge Q. Charge Q is uniformly distributed along a thin flexible rod of length L. The rod is then bent into a semi-circle shown below. a. Find an expression for the electric field at the center of the semi-circle. Hint: A small piece of arc length As spans a small angle A0 = As/R, where R is the radius. b. Evaluate the field strength, if L = 10 cm and Q = 30 nC. Center

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please follow this criteria and try to explain everything.

  1. Include a drawing of the charge distribution and the point at which the E-field is being evaluated.
  2. Include a sample vector diagram, showing the electric-field vectors for critical do's.
  3. Use the diagrams to help explain any cancellations due to symmetry.
  4. Set up the integrals to determine the non-zero electric-field components. Show your work reasoning for constructing the integrals.
  5. Assess: is your result reasonable? Do the solutions have the correct behavior far away from the charge?
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3. The figure below shows a thin rod of length L with total charge Q. Charge Q is uniformly
distributed along a thin flexible rod of length L. The rod is then bent into a semi-circle shown
below.
a.
Find an expression for the electric field at the center of the semi-circle. Hint: A small piece of
arc length As spans a small angle A0 = As/R, where R is the radius.
Evaluate the field strength, if L = 10 cm and Q = 30 nC.
b.
...
xxxxx++]
LIH
Center
x x x x x + #
Ma...
Transcribed Image Text:= 3. The figure below shows a thin rod of length L with total charge Q. Charge Q is uniformly distributed along a thin flexible rod of length L. The rod is then bent into a semi-circle shown below. a. Find an expression for the electric field at the center of the semi-circle. Hint: A small piece of arc length As spans a small angle A0 = As/R, where R is the radius. Evaluate the field strength, if L = 10 cm and Q = 30 nC. b. ... xxxxx++] LIH Center x x x x x + # Ma...
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