A coil with a radius of 4.00 cm and 500 turns is placed in a uniform magnetic field that varies with time according to the relation B= (1.20)t2 + (3.20)t5. The coil is connected to a 600 ohms resistor and its plane is perpendicular to the magnetic field. The resistance of the coil is 80 ohms. a) Calculate the modulus of the electromotive force induced in the coil as a function of time. b) What is the modulus of the current passing through the resistor for t = 5.00s
A coil with a radius of 4.00 cm and 500 turns is placed in a uniform magnetic field that varies with time according to the relation B= (1.20)t2 + (3.20)t5. The coil is connected to a 600 ohms resistor and its plane is perpendicular to the magnetic field. The resistance of the coil is 80 ohms. a) Calculate the modulus of the electromotive force induced in the coil as a function of time. b) What is the modulus of the current passing through the resistor for t = 5.00s
Related questions
Question
A coil with a radius of 4.00 cm and 500 turns is placed in a uniform magnetic field that varies with time according to the relation B= (1.20)t2 + (3.20)t5. The coil is connected to a 600 ohms resistor and its plane is perpendicular to the magnetic field. The resistance of the coil is 80 ohms.
a) Calculate the modulus of the electromotive force induced in the coil as a function of time.
b) What is the modulus of the current passing through the resistor for t = 5.00s?
Expert Solution
This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
Step by step
Solved in 2 steps with 2 images