R1 R2 х {R1} {R2} V1 U1 out {VIN} For the circuit shown assume the OPAMP is ideal. In terms of V1, R1, R2, and AvOL write the equation for the node voltage at X (Note: Do not try to format a subscript. Use V1, R1, R2, and AVOL.), Preview If R1=1000 2, R2=400000 2, V1=-0.01 V, AVOL=10000, VDDP=24 V, and VDDN=-24 V, Vx is calculated to be In terms of V1, R1, R2, and AyOL Write the equation for the node voltage at out, Preview If R1=1000 2, R2=400000 2, V1=-0.01 V, AVOL=10000, VDDP=24 V, and VDDN--24 V, Vout is calculated to be Notes on this question can be found here . The relative tolerance for this problem is 1 %. 5, VDDN VDDP in
R1 R2 х {R1} {R2} V1 U1 out {VIN} For the circuit shown assume the OPAMP is ideal. In terms of V1, R1, R2, and AvOL write the equation for the node voltage at X (Note: Do not try to format a subscript. Use V1, R1, R2, and AVOL.), Preview If R1=1000 2, R2=400000 2, V1=-0.01 V, AVOL=10000, VDDP=24 V, and VDDN=-24 V, Vx is calculated to be In terms of V1, R1, R2, and AyOL Write the equation for the node voltage at out, Preview If R1=1000 2, R2=400000 2, V1=-0.01 V, AVOL=10000, VDDP=24 V, and VDDN--24 V, Vout is calculated to be Notes on this question can be found here . The relative tolerance for this problem is 1 %. 5, VDDN VDDP in
Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter18: Resistive-inductive Parallel Circuits
Section: Chapter Questions
Problem 13PP: In an R-L parallel circuit, IT=1.25 amps, R=1.2k, and XL=1k. Find IR
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