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College Physics
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ISBN: 9781305952300
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Publisher: Cengage Learning
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per meter for the cable. Assume that the space between the conductors is filled with a material with a dielectric constant of 3.8.
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Transcribed Image Text:A coaxial cable used in a transmission line has an inner radius of 0.14 mm and an outer radius of 0.67 mm. Calculate the capacitance
per meter for the cable. Assume that the space between the conductors is filled with a material with a dielectric constant of 3.8.
Number
i
Units
eTextbook and Media
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- A coaxial cable used in a transmission line has an inner radius of 0.11 mm and an outer radius of 0.65 mm. Calculate the capacitance per meter for the cable. Assume that the space between the conductors is filled with a material with a dielectric constant of 3.0. Number Unitsarrow_forwardA coaxial cable used in a transmission line has an inner radius of 0.076 mm and an outer radius of 0.89 mm. Calculate the capacitance per meter for the cable. ASsume that the space between the conductors is filled with a material with a dielectric constant of 2.8. Number i Unitsarrow_forwardA coaxial cylindrical cable has an inner conductor of radius a = 0.0034 m, a surrounding conductor of radius b = 0.013 m, and length l = 2.8 m. a. Calculate the numerical value of the capacitance in F. b. Express the capacitance C through potential difference across the capacitor ΔV and charge Q. c. If the potential difference ΔV = 0.3 V, how much charge is stored in the capacitor?arrow_forward
- aarrow_forwardIn the figure find the equivalent capacitance of the combination. Assume that C₁ = 12.3 µF, C₂ = 6.43 μF, and C3= 3.16 μF. Number i Units C3 C₁ C₂arrow_forward1. Find the total capacitance for three capacitors connected in series, given their individual capacitances are 1.000, 5.000, and 8.000 µF. 2. Two charges Q1 = +3nC and Q2 = -4nC are separated by a distance of 40 cm. What is the electric field strength at a point that is 20 cm from Q1 and 50 cm from Q2? The point lies between Q1 and Q2.arrow_forward
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