Part A Determine the output of the motor at the instant = 30°. Express your answer using three significant figures.
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- Please don't provide handwritten solution ...Needs Complete typed solution with 100 % accuracy.A 5.50 nF capacitor is charged to 12.0 V, then disconnected from the power supply and connected in series through a coil. The period of oscillation of the circuit is then measured to be 8.60 x 10-5 s. For related problemsolving tips and strategies, you may want to view a Video Tutor Solution of An oscillating circuit. Part C Calculate the total energy of the circuit. Express your answer with the appropriate units. ΜΑ 7 0 ? U = Value Units Submit Request Answer Part D Calculate the maximum current in the circuit. Express your answer with the appropriate units. D ΜΑ 7 0 ? Imax = Value Units Submit Request Answer
- Part A How many kWh of energy does a 650-W toaster use in the morning if it is in operation for a total of 5.5 min ? Express your answer to two significant figures and include the appropriate units. Energy = 6.0x10-2 kWh Submit Previous Answers Correct Part B At a cost of 9.0 cents/kWh, estimate how much this would add to your monthly electric energy bill if you made toast four mornings per week (16 times per month). Express your answer using two significant figures. ? Cost = cents/monthPart A A charged capacitor with C = 640 µF is connected in parallel to an inductor that has L = 0.450 H and negligible resistance. At an instant when the current in the inductor is i = 1.80 A , the current is increasing at a rate of di/dt = 89.0 A/s. During the current oscillations, what is the maximum voltage across the capacitor? Express your answer to three significant figures and include the appropriate units. ? HA Vmax = Value Units Submit Request Answere. Calculate the total energy dissipated in the loop during the first 6 seconds.
- Part A A circular wire loop of radius r = 18 cm is immersed in a uniform magnetic field B = 0.425 T with its plane normal to the direction of the field. If the field magnitude then decreases at a constant rate of -1.1x10-2 T/s, at what rate should r increase so that the induced emf within the loop is zero? Express your answer using two significant figures. ? = 0.472 mm/s dtName: A Using Ohm's and Kirchhoff's Laws, solve the circuit: Show your formulas I= 25 mA VI = V2 = + R V3 = 680 2 V4 = 45 V 1502 R2 RA = 7502 RT = VA = R4 R3 C VBD = Vc = R1 2) Solve for and show your formulas: R2 RT = Vs = P2 = 0.5 W R1 R2 I = Pr =2 W I2 = %3D 200 mA IINeeds Complete typed solution with 100 % accuracy.