Question

In: Physics

A heating coil is made up by winding the nichrome wire of radius r = 1.00...

  1. A heating coil is made up by winding the nichrome wire of radius r = 1.00 mm and length L = 120 m. If the voltage of 120 V is applied across the coil, what power is dissipated in it? (The resistivity of nichrome is 1.50x10-6 Ω · m).

If the voltage is kept the same, which of the following statements is (are) correct:

  1. If the wire were longer, the power would be greater;
  2. If the wire were longer, the power would be lesser;
  3. If the radius of the wire were larger, the power would be lesser;
  4. If the radius of the wire were larger, the power would be greater;
  5. A and C;
  6. B and D.

Solutions

Expert Solution


Related Solutions

A wire with a radius R = .89 mm and length 45 cm is made of...
A wire with a radius R = .89 mm and length 45 cm is made of two materials, Carbon and Nichrome (resistivity not given I assume it needs to be googled). The Carbon portion is 15 cm long. The temperature of the wire is 75 oC. The wire is connected to a 12 volt battery. a) Find the total Resistance of the battery as well as the current (I) and the current density (J) and the electric field (E) in...
A four-turn circular wire coil of radius 0.550 m lies in a plane perpendicular to a...
A four-turn circular wire coil of radius 0.550 m lies in a plane perpendicular to a uniform magnetic field of magnitude 0.355 T. If the wire is reshaped from a four-turn circle to a two-turn circle in 0.128 s (while remaining in the same plane), what is the average induced emf in the wire during this time?
What is the current in a wire of radius R = 3.58 mm if the magnitude...
What is the current in a wire of radius R = 3.58 mm if the magnitude of the current density is given by (a) Ja = J0r/R and (b) Jb = J0(1 - r/R) in which r is the radial distance and J0 = 5.08 × 10^4 A/m^2? (c) Which function maximizes the current density near the wire’s surface?
A circular wire loop of radius r = 0.25 m and resistance R = 11.1 Ω...
A circular wire loop of radius r = 0.25 m and resistance R = 11.1 Ω rotates about a shaft through its diameter at a constant rate of f = 5.8 Hz in a uniform B = 0.49-T magnetic field directed perpendicular to the rotation axis. The plane of the loop is perpendicular to the magnetic field at time t = 0. a) Find the expression for the time-dependent magnetic flux through the loop. Φ = b) Find the value...
A 20-turn circular coil of radius 4.20 cm and resistance 1.00 Ω is placed in a magnetic field directed perpendicular to the plane of the coil.
A 20-turn circular coil of radius 4.20 cm and resistance 1.00 Ω is placed in a magnetic field directed perpendicular to the plane of the coil. The magnitude of the magnetic field varies in time according to the expression B = 0.010 0t + 0.040 0t2, where B is in teslas and t is in seconds. Calculate the induced emf in the coil att = 5.40 s.
Problem 3. A square loop of wire is made up of 50 turns of wire, 40...
Problem 3. A square loop of wire is made up of 50 turns of wire, 40 cm on each side. The loop is immersed in a 0.4−T magnetic field perpendicular to the plane of the loop. The loop of wire has little resistance but it is connected to two resistors in parallel as shown. When the loop of wire is rotated by 180°, how much charge flows through the circuit? How much charge goes through the smaller resistor? What is...
A solenoid (coil) of radius R has 10 turns per centimeter. It is 10cm long, and...
A solenoid (coil) of radius R has 10 turns per centimeter. It is 10cm long, and the coiled wire carries a current I. In addition to the coil of wire, a second wire runs right down the central axis of the solenoid, carrying a current of 2I. (The solenoid wire doesn't intersect this second wire, because the former wraps around the latter, always a distance R away.) A) Find the magnitude of the total magnetic field at a distance R/2...
A single-coil loop of radius r = 7.40 mm, shown below, is formed in the middle...
A single-coil loop of radius r = 7.40 mm, shown below, is formed in the middle of an infinitely long, thin, insulated straight wire carrying the current i = 32.5 mA.   What is the magnitude of the magnetic field at the center of the loop?
An insulating sphere of mass M and radius R is wrapped with N coils of wire...
An insulating sphere of mass M and radius R is wrapped with N coils of wire around its equator. The sphere is placed on an incline at an angle θ in a uniform magnetic field of strength B. The goal is to keep the sphere from rolling down the incline by having a current in the coils. [Recall, the force of static friction at the point of contact creates a torque about the center of the sphere, which is what...
fred places two circular loops of conducting wire, one large (radius R) and one small (radius...
fred places two circular loops of conducting wire, one large (radius R) and one small (radius r), on a horizontal table such that they are centred at the same point. He arranges the larger loop to carry a constant current I clockwise (when viewed from above). In order to induce a current in the smaller loop, fred then lifts the smaller loop vertically upwards at a constant speed v, without changing its orientation. 1 - Explain why fred is correct...
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT