Part (a) E(0.5(R₁+R₂)) = Part (b) What is the radial electric field at the point r = 0.5(R/+R₂)? Give your answer in units of kN/C. What is the radial electric field at the point = 2R₂? Give your answer in units of kN/C

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Chapter1: Units, Trigonometry. And Vectors
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Component 1 A hollow non-conducting spherical shell has inner radius R₁ = 7 cm and outer
radius R₂ = 15 cm. A charge Q=-35 nC lies at the center of the shell. The shell carries a spherically
symmetric charge density p = Ar for R << R₂ that increases linearly with radius, where A = 29
µC/m4.
Part (a)
E(0.5(R₁+R₂)) =
What is the radial electric field at the point r = 0.5(R/+R₂)? Give your answer in units of kN/C.
Part (b) What is the radial electric field at the point = 2R₂? Give your answer in units of kN/C
R₂
Transcribed Image Text:Component 1 A hollow non-conducting spherical shell has inner radius R₁ = 7 cm and outer radius R₂ = 15 cm. A charge Q=-35 nC lies at the center of the shell. The shell carries a spherically symmetric charge density p = Ar for R << R₂ that increases linearly with radius, where A = 29 µC/m4. Part (a) E(0.5(R₁+R₂)) = What is the radial electric field at the point r = 0.5(R/+R₂)? Give your answer in units of kN/C. Part (b) What is the radial electric field at the point = 2R₂? Give your answer in units of kN/C R₂
Component 2
A 5-g insulating ball is connected as shown to a large sheet of charge by a 0.1-m
string. The ball has a net charge of 0.2 µC and has an equilibrium position of 0 = 11°.
Randomized Variables
m₂ = 5 g
0 = 11°
Part (a) Enter the surface charge density of the sheet, in microcoulombs per square meter.
σ=
++++++++++++++
Transcribed Image Text:Component 2 A 5-g insulating ball is connected as shown to a large sheet of charge by a 0.1-m string. The ball has a net charge of 0.2 µC and has an equilibrium position of 0 = 11°. Randomized Variables m₂ = 5 g 0 = 11° Part (a) Enter the surface charge density of the sheet, in microcoulombs per square meter. σ= ++++++++++++++
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