Consider a wire with resistivity, ρ = (2.20 ) × 10 –7 Ω∙m, a diameter, D = (1.50 ) mm, and a length, L = (23) m. Determine the current in amperes (A) that would flow through this resistor if it hooked up to a (10 ) V battery. Round your answer to two significant figures.

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Consider a wire with resistivity, ρ = (2.20 ) × 10 –7 Ω∙m, a diameter, D...
A = 0 B = 4 C = 11 Consider a wire with resistivity, ρ = (1.20 + A) × 10 –7 Ω∙m, a diameter, D = (1.50 + B) mm, and a length, L = (15.0 + C) m. Determine the current in amperes (A) that would flow through this resistor if it hooked up to a (10 + B) V battery. Round your answer to two significant figures.
A solenoid is made from wire of resistivity ρ= 1.72 10 ^-8 m Ω⋅ and diameter 0.8 mm that is wrapped into 200 loops of 4 cm diameter. The solenoid is 8 cm long. If an emf of 12 V is connected to the ends of the wire, what is the magnetic field that this solenoid produces? Determine the length of wire and calculate the resistance in the wire. R= ρ L/A Calculate the current in the solenoid. Calculate the...
Consider a wire with resistivity of (1.20+A)x10-7 Ω m, a diameter of (1.50+B) mm, and a length of (15.0+C) m. Determine the resistance of the wire in ohms (Ω). Round your answer to three significant figures. a= 8 b = 2 c= 12
Consider a wire with resistivity of 2.20x10-7 Ω m, a diameter of 9.50 mm, and a length of 29 m. Determine the resistance of the wire in ohms (Ω). Round your answer to three significant figures.
Consider a wire with resistivity of 9.2 x10-7 Ω m, a diameter of 4.5 mm, and a length of 33 m. What is the resistance of the wire in ohms (Ω).
Copper wire has a resistivity ρ = 1.7 × 10-8 Ω⋅m when at 20°C and it has a temperature coefficient α = 3.9 × 10-3 K-1. A solid cylinder of copper of length L = 85 cm and diameter D = 2.5 mm has one end held at T1 = 7°C and the other end is held at T2 = 210°C. The temperature increases linearly between the two ends of the cylinder. Given that T= T1 + ( x/L )...
A cylindrical resistor has diameter d, resistivity ρ, and length L. A battery with voltage V is connected to the resistor. Quantitatively explain (i.e. find the factor) how the resistance AND power dissipated would change given the following modifications. (Take each part on is own, not as a series of events!) (a) Doubling the length and tripling the cross section area of the resistor. (b) Replacing the resistor material with material that has 10 times higher resistivity. (c) Halving the...
A particular wire has a resistivity of 2.1*10^-8 Ω · m and a cross-sectional area of 2.9*10^-6 m2. A length of this wire is to be used as a resistor that will receive 41 W of power when connected across a 20-V battery. What length of wire is required? _________km
A wire is made of a material with a resistivity of 6.56847 × 10−8 Ω · m. It has length 4.63161 m and diameter 0.76384 mm. What is the resistance of the wire? Answer in units of Ω.
A 16.50 ?? long wire has a diameter of 0.355 ?? and a resistivity of7.65 ? 10,- Ω ??. ( a ) Calculate its resistance (b) If a 3.85 ???? battery is connected to the wire, what current exists in the circuit? I changed those three values to meters as below, what do I do next please Length = 0.165 m Diameter = 0.000355 m Resistivity = 7.65 * 10^-9 Ω m