A generator uses a coil that has 300 turns and a 0.29-T magnetic field. The frequency of this generator is 60.0 Hz, and its emf has an rms value of 120 V. Assuming that each turn of the coil is a square (an approximation), determine the length of the wire from which the coil is made.
A generator uses a coil that has 300 turns and a 0.29-T magnetic field. The frequency...
A generator uses a coil that has 60 turns and a 0.50-T magnetic field. The frequency of this generator is 60.0 Hz, and its emf has an rms value of 120 V. Assuming that each turn of the coil is a square (an approximation), determine the length of the wire from which the coil is made.
The coil of an electric generator rotates at a frequency of 60.0 Hz and develops an emf of 120 V. The coil has an area of 0.0030 m^2 and consists of 500 turns. Find the magnitude of the magnetic field in which the coil rotates. Answer: 0.30 T
A generator rotates at 85 Hz in a magnetic field of 0.050 T . It has 650 turns and produces an rms voltage of 110 V and an rms current of 55.0 A . 1. What is the peak current produced? 2. What is the area of each turn of the coil?
A generator almost always contains a coil of wire inside a magnetic field. The coil shown below has N turns and a radius of R. It is rotating in a magnetic field of strength B at an angular frequency o. This means that the angle between the area vector of the coil and the magnetic field is = wt. х a. What is the induced emf in the coil as a function of time? b. If the left side of...
The coil in an AC generator consists of 6 turns of wire, each of area A= 0.0800 m², and the total resistance of the wire is 10.0 V. The coil rotates in a 0.400-T magnetic field at a constant frequency of 50.0 Hz. Find the maximum induced emf in the coil. What is the maximum induced current in the coil when the output terminals are connected to a low- resistance conductor?
A rotating generator has a square planar coil consisting of 100 turns. The coil rotates 60 times per second in a magnetic field of 1.25 T and yields a peak output voltage of 300 V. What is the length of one side of the coil? 0.64 cm 8.0 cm 64 cm 80 cm 120 cm
A generator has a 100-turn coil that rotates in a 0.30-T magnitude B-field at a frequency of 80 Hz. The area of each loop is 0.003 m2. Assume the coil plane is parallel at time is equal to 0. Determine the emf magnitude (in V) when time is 0.0140 s. Use 3 significant figures for answer.
A generator rotates at 91 Hz in a magnetic field of 0.050 T . It has 750 turns and produces an rms voltage of 130 V and an rms current of 45.0 A . What is the peak current produced? Express your answer to three significant figures and include the appropriate units. What is the area of each turn of the coil? Express your answer to two significant figures and include the appropriate units.
A rotating generator has a square planar coil consisting of 100 turns. The coil rotates 60 times per second in a magnetic field of 1.25 T and yields a peak output voltage of 300 V. What is the length of one side of the coil? Group of answer choices 0.64 cm 8.0 cm 64 cm 80 cm 120 cm
A rotating generator has a square planar coil consisting of 100 turns. The coil rotates 60 times per second in a magnetic field of 1.25 T and yields a peak output voltage of 300 V. What is the length of one side of the coil? A. 0.64 cm B. 8.0 cm C. 64 cm D. 80 cm E. 120 cm