The current i through a 3.7 H inductor varies with time t as shown by the graph of the figure. The inductor has a resistance of 11 Q. Find the magnitude of the induced emf & during the time intervals (a) t = 0 to 2 ms; (b) 2 ms to 5 ms, and (c) 5 ms to 6 ms. (Ignore the behavior at the ends of the intervals.) 6 i (A) 4 2 t (ms) 4 6
Q: (a) What is the emf across the inductor immediately after the switch is opened? V (b) When does…
A: Detailed solution is given below: Please UPVOTE dear sir
Q: The figure below shows a slidewire generator with motional emf E, when the wire at A slides across…
A:
Q: The current i through a 6.1 H inductor varies with time t as shown by the graph of the figure. The…
A: Induced e.m.f
Q: After being closed for a long time, the switch S in the circuit shown in the figure below is thrown…
A: The circuit diagram is shown below.
Q: E R M switch In the circuit shown in the figure above a generator supplies a voltage of E(t) = 60…
A: Voltage Inductance Resistance At , current Current after seconds
Q: After being closed for a long time, the switch S in the circuit shown in the figure below is thrown…
A:
Q: The current i through a 4.0 H inductor varies with time t as shown by the graph of the figure. The…
A: “Since you have posted a question with multiple sub-parts, we will solve first three subparts for…
Q: For a classroom demonstration, a professor built an RL circuit similar to the one shown in the…
A: Introduction: RL circuit is a circuit which consists of Inductors and Resistors combinations and…
Q: Two resistors R₁ = 15.00, and R₂ = 11.5 are connected with a 340 mH inductor, a 12.0 V battery and a…
A: “Since you have posted a question with multiple sub parts, we will provide the solution only to the…
Q: When the 20.5 A current through an inductor is turned off in 1.55 ms, an 810 V emf is induced,…
A:
Q: The 4.96 A current through a 1.50 H inductor is dissipated by a 1.97 Ω resistor in a circuit like…
A: Maximum current in inductor: I0 = 4.96 A Inductance on inductor: L = 1.5 H Resistance: R = 1.97 ohm
Q: ele R L (a) After the switch is first thrown to a (connecting the battery), what time interval…
A:
Q: (A) What is the current in the circuit the moment after the switch S is closed? (B) What is the…
A:
Q: CP At time t = 0 a proton is a distance of 0.360 m from a very large insulating sheet of charge and…
A: We have to find the speed of proton at t=5×10-8 s We know the distance at which the proton is placed…
Q: Part E Find the reading of the voltmeter (V₁) after the switch has been closed for a very long time.…
A:
Q: R switch In the circuit shown in the figure above a battery supplies a constant voltage of E=30V,…
A:
Q: After being closed for a long time, the switch S in the circuit shown in the figure below is thrown…
A:
Q: In the figure below, a 13.0 V ideal battery, a 23.302 resistor, and an inductor are connected by a…
A:
Q: Problem 10: Show how to resolve each force into its x, y, z components. Set up the calculation used…
A: The component of a general vector v→ along some direction is given by V cosθ, where θ is the angle…
Q: Three resistors, R, 2R, and 3R, where R = 18.8 2, are wired to an inductor, L = 0.255 H, an emf, ε =…
A:
Q: , Problem 7: A 1.4 H inductor in an RL circuit (with resistance 2.25 Ω) is initially fully charged.…
A: (a) The initial energy in the inductor will be:
Q: The current i through a 4.8 H inductor varies with time t as shown by the graph of the figure. The…
A: Using relation between emf and inductance,
Q: The current i through a 5.3 H inductor varies with time t as shown by the graph of the figure. The…
A: Write the expression for the induced emf in a inductor.
Q: For a classroom demonstration, a professor built an RL circuit similar to the one shown in the…
A: As per guidelines only 3 subparts are solved here.
Q: The voltage across an inductor is proportional to the inductor and the derivative of the current…
A: As we know that, Voltage across Inductor is given by :…
Q: An inductor that has an inductance of 16.0 H and a resistance of 24.0 2 is connected across a 100 V…
A: inductance=16 Hresistance=24Ωvoltage=100 v
Q: A constant voltage of 12.00 V has been observed over a certain time interval across a 2.00 H…
A:
Q: the magnitude of the induced emf & de
A:
Q: The battery terminal voltage in the figure below is = 8.10 V and the current I reaches half its…
A: E = 8.10 V maximum value of current = 6 A time taken for the current to reach half the maximum value…
Q: Consider the circuit shown in the figure below. Take E = 6.00 V, L = 8.56 mH, and R = 4.24 N. R (a)…
A:
Q: The current in a 62 mH inductor changes with time as I = bt2 - at. With a 6 A/s and b = 6 A/s, find…
A:
Q: The current i through a 4.1 Hinductor varies with time t as shown by the graph of the figure. The…
A:
Q: A loop of wire has a self-inductance of 5.5 mH. You pass a current of 9.0 Amps though the loop, and…
A: Given Self- Inductance of loop ( L) = 5.5 mH = 5.5 × 10-3 H…
Q: An RL circuit consists of a switch, an emf source E, a 3.0 ka resistor, and a 1.0 H inductor. If the…
A:
Q: The current i through a 6.5 H inductor varies with time t as shown by the graph of the figure. The…
A: Induced emf
Trending now
This is a popular solution!
Step by step
Solved in 3 steps
- In the figure, R = 11.0 Ω, C = 6.82 μF, and L = 54.0 mH, and the ideal battery has emf = 32.0 V. The switch is kept in position a for a long time and then thrown to position b. What are the (a) frequency and (b) current amplitude of the resulting oscillations?ℇ = 100 V, R = 20.0 Ω, and L = 100.0 mH. The switch is closed att = 0. (a) What is the time constant of the circuit shown below? (b) Find the currentat t = 0.050 sec, (c) at what time the current is 40% of its maximum value?In the circuit shown in the figure, let L = 7.40 H, R = 5.90 ohms and E = 120 V. What is the self induced emf 0.200 s after the switch is closed?
- After being closed for a long time, the switch S in the circuit shown in the figure below is thrown open at t = 0. In the circuit, & = 24.0 V, RA= 3.70 KM, Rß = 7.50 kỵ, and L = 665 mH. RA ww S mo L +1 b ww RB (a) What is the emf across the inductor immediately after the switch is opened? V (b) When does the current in the resistor RÅ have a magnitude of 1.00 mA? SConsider the circuit shown in the figure below. Take E = 6.00 V, L = 7.92 mH, and R = 3.60 Ω. S + I R ww (a) What is the inductive time constant of the circuit? ms (b) Calculate the current in the circuit 250 us after the switch is closed. A (c) What is the value of the final steady-state current? A (d) How long does it take the current to reach 81.0% of its maximum value? msThe current in the RL circuit shown below reaches one-fourth its maximum value in 2.75 ms after the switch s, is thrown. R (a) Determine the time constant of the circuit (in ms). ms (b) Determine the resistance of the circuit (in 0) if L = 200 mH.
- A constant voltage of 11.00 V has been observed over a certain time interval across a 2.30 H inductor. The current through the inductor, measured as 1.00 A at the beginning of the time interval, was observed to increase at a constant rate to a value of 8.00 A at the end of the time interval. How long was this time interval?A battery providing emf V is connected in series to a resistor R and an inductor L, and left until the current reaches a constant value. (a) What is the energy stored in the inductor in terms of V, R and L? Then, at t = 0, the battery is suddenly removed, so that only the inductor and resistor are left connected to each other in a closed circuit. (b) Derive an expression for the energy stored in the inductor in the new circuit without the battery. Sketch your expression as a function of time. (c) How long does it take for the energy stored in the inductor to decay to 1/9 of the initial value that you found in part (a)?Consider the circuit in the figure below, taking & = S + R ww ele 6.00 V, L = 7.20 mH, and R = 7.20 0. (a) What is the inductive time constant of the circuit? ms (b) Calculate the current in the circuit 250 µs after the switch is closed. A (c) What is the value of the final steady-state current? A (d) After what time interval does the current reach 80.0% of its maximum value? ms
- Consider a 22.5 mH inductor that has a resistance of 4.1 Ω. Part (a) What is the time constant, τ, of the inductor, in seconds? Part (b) If the inductor is connected to a 12.0 V battery, what is the current, I, in amperes, after 10.5 ms?Remove the inductor from the circuit in the figure and set R = 216 Q, C = 18.6 µF, fd = 60.0 Hz, and &m = 36.0 V. What are (a) Z, (b) , and (c) I? 90 R L 000 (a) Number Units (b) Number Units (c) Number Units