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Bridge Network Part 4 (a) Construct the network of Fig. 14.4. Insert the measured resistor values...
PROCEDU Part 1 Resistance (a) Construct the circuit of Fig. 4.1. Insert the measured values of the counter if available mined by the ohmmeter section of your multimeter. Hook up the frequeney Red r measured / 100Ω Sensing resistor Red measured 500 Hz Oscilloscope Black Black FIG. 4.1 Caution: Always ensure that the ground of the oscilloscope is connected to the ground of the oscillator. Otherwise a hazardous situation may result (b) Set the voltage across R to 4 V...
The figure below shows a resistor network. R2 ww R R3 RA V The values of the components are as follows: • R = 4.722 • R2 = 6.81 2 • R3 = 8.83 2 • R = 9.56 12 . V = 14.70 Volts Fill in all the values into the table below: Element R (12) V (V) Ri I (A) P(W) R2 R3 RA RA Re Rc
The figure below shows a resistor network. R2 ww R R3 RA V The values of the components are as follows: • R = 4.722 • R2 = 6.81 2 • R3 = 8.83 2 • R = 9.56 12 . V = 14.70 Volts Fill in all the values into the table below: Element R (12) V (V) Ri I (A) P(W) R2 R3 RA RA Re Rc
rt2 Tuned Band-Pass Filter Ca) Construct the network of Fig. 17.5. Insert the measured value of the resisor R. re Ri for the inductor and record in the figure. Ri measured Ha Channel 2 Vert: appropriate voltage scale Hor: function of frequency Channel 1 Vert: 1 Vidiv Hor: function of frequency 7.5
Activity 2) Wheatstone Bridge Circuit Analyze and then construct the circuit shown with the indicated nominal R values shown in the table. Use the 5v supply for Vsource. 7) Calculate and Measure the voltage across BC for each version of the circuit, Q1 and Q2. + (V) Ri R2 a + Q# Calculated Measured V[V] V[V] 1 R1 R2 R3 [kΩ] | [kΩ] [kΩ] 2 1 2 2 2 R4 [k22] 1 Two 1 k22 in parallel + R3 N...
Use measured resistance values and node analysis to calculate
the node voltages.
Use measured resistance values and mesh analysis to calculate
the mesh currents.
Show that the calculated values agree with the measured values
and explain any discrepancies between measured and calculated
values.
Introduction: In this pre-lab we will look at node voltages, mesh currents and bridge circuits. Bridge Circuits are used to make precision measurements, and in this lab -- -0 V2 will look at a DC Bridge Circuit...
Course and Section cto EXPERIMENT ac series-Parallel Sinusoidal Circuits OBJECTIVES 1. Measure the currents of series-parallel R-L and R-C networks using sensing resistors 2. Demonstrate the Pythagorean relationship between the currents of the networks. 3. Measure the phase angles associated with the currents of the networks. 4. Calculate the input impedance of a parallel network using measured values EQUIPMENT REQUIRED Instruments Resistors 1-10-Q, 470-Ω, l-kM (14.W) Inductors 1-10-mH Capacitors 1-0.02-pF I-DMM 1--Oscilloscope 1-Audio oscillator or function generator 1--Frequency counter (if...
Please help me answer this 3-part question based on the
information that follows, showing work when helpful:
a. What is the effective resistance of the resistors you
used for number 3?
b. Which of your measurements had the smallest relative
uncertainty?
c. Batteries have an internal resistance, which we have
not considered in the lab. How would the internal resistance of
your battery affected your calculations for part a?
R1=10 KiloOhms, R2=2.2 KiloOhms, R3=1 KiloOhm, E1 and E2 each
equal...
i dont undersrand how to calculate the values from measured
data?
2. Turn on the DC power supply, measure its output voltage with DMM2 and record it as measured data Vs in Table 6. 3. Use DMM2 to measure the voltages V, V2.V. Va across R R. RR respectively. Use DMMI to measure the current Is (notice: Is=1= 12 + 1,-1). Record the measured values of I, and V., V2, V3. V4 in Table 6. 4. Turn off the DC...
I need a help with my lab, I write all data that get.
355 SERIES SINUSOIDAL CIRCU CUITS neeseed 000 10 mH 10 kHz + R E-8V(Pp) V 1 kn Channel 2 Vert: 1 Vidiv Hor: 20 us/div. Channel 1 Vert: 1 Vidiv Hor: 20 us/div. FIG. 9.1 (b) After setting E to 8 V (p-p), determine the peak-to-peak voltage for Ve from chan- nel 2 and record in the top row of Table 9.1 Determine the phase angle 8,...