our work must be clear to read. Clearly label all cases (a, b). Show all steps in GRASS format. GRASS means given/required/analysis/solution/statement. You can type your solutions and answers, ut neat handwriting is perfectly acceptable. Please submit your assignment as ONE PDF file on 2L. I do not accept any assignments via email after the due date. roblem: Charged spheres are fixed in position, as shown. 0.30 m 0.20 m 9₁ = +3.0x10 C a) Find the electrostatic force between charges q, and q₂. b) Find the electric field strength at M. c) Find the voltage at M. 9₂ = -4.0×10 °C M

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Assignment 6 Electricity
Your work must be clear to read. Clearly label all cases (a, b). Show all steps in GRASS format.
GRASS means given/required/analysis/solution/statement. You can type your solutions and answers,
but neat handwriting is perfectly acceptable. Please submit your assignment as ONE PDF file on
D2L. I do not accept any assignments via email after the due date.
Problem: Charged spheres are fixed in position, as shown.
0.30 m
0.20 m
9₁ = + 3.0x10 *C
a) Find the electrostatic force between charges q, and q₂.
b) Find the electric field strength at M.
9₂ = -4.0×10 C
/17
M
c) Find the voltage at M.
d) Find the potential energy stored between two point charges of magnitude q, and q₂.
e) How much work must be done to increase the distance between charges q, and q₂ from 30
cm up to 70 cm?
Transcribed Image Text:Assignment 6 Electricity Your work must be clear to read. Clearly label all cases (a, b). Show all steps in GRASS format. GRASS means given/required/analysis/solution/statement. You can type your solutions and answers, but neat handwriting is perfectly acceptable. Please submit your assignment as ONE PDF file on D2L. I do not accept any assignments via email after the due date. Problem: Charged spheres are fixed in position, as shown. 0.30 m 0.20 m 9₁ = + 3.0x10 *C a) Find the electrostatic force between charges q, and q₂. b) Find the electric field strength at M. 9₂ = -4.0×10 C /17 M c) Find the voltage at M. d) Find the potential energy stored between two point charges of magnitude q, and q₂. e) How much work must be done to increase the distance between charges q, and q₂ from 30 cm up to 70 cm?
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