. For the circuit shown in Figure 2, the switch is opened at t = 0 after being closed for an extended period of time. Calculate the voltage across the two (2) ohm resistor for t > 0. R₁ L ww m 2 H 602 ww 15 V=Vst R3 R₂ Ω Figure #2 202
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- I need a drawing on how to connect the function generator, oscilliscope, and both multimeters. It is hard for me to follow text instructions. The function generator has a postive,common and negative. The oscilliscope has chanell A and B, both channels have a postive and a negative. I know you can provide text instruction but a little sketch would be very helpful thank you.I know they are different parts, but they are just short brief ques. Can you please do both?In the circuit in the figure, the switch was left open for a long time and was closed at t=0. When the values of the elements in the circuit are as follows, how many amperes is the current on the coil at t=0.16 seconds?R1= 8 OhmsR2= 8 OhmsR3= 9 OhmsL = 10 henryV= 26V
- Consider the RC circuit in Figure 2 below. Assuming the switch has been open for a long time before it is closed, fill in a table providing the current through each component and the voltage across each component immediately after the switch is closed, and a very long time after the switch is closed. Next, figure out the time constant for the circuit. (Hint: Assign currents to each branch. Set up the necessary KVL and KCL equations. Eliminate all but one variable to get an equation for just one of the currents. You shouldn’t have to solve this equation to recognize the time constant!)I need help with these questions pleaseCan you help with subparts 11a-11c Consider the electric circuit in the figure below with the following parameters:ε1= 6.00 V, ε2= 3.00 V, R1= 500 Ω, R3= 100 Ω. 11a. What is the potential at point B? 11b. Calculate the current i3. 11c. Calculate the current i1. This is not and will not be graded This not incomplete