Column equai. It is possible to define three closed loops in the circuit shown in Figure 5.12 as follows: 4. Loop 1: E, R1, R3 Loop 2: R3, R2, R4 Loop 3: E, R,R2, R4 Using the da ta you recorded in...


Column equai.<br>It is possible to define three closed loops in the circuit shown in Figure 5.12 as follows:<br>4.<br>Loop 1:<br>E, R1, R3<br>Loop 2:<br>R3, R2, R4<br>Loop 3:<br>E, R,R2, R4<br>Using the da ta you recorded in Table 5.4, determine how well your results demonstrate the<br>Account for any<br>validity of Kirchhoff's voltage law around each of the closed loops.<br>discrepancies between theoretical and experimental results.<br>

Extracted text: Column equai. It is possible to define three closed loops in the circuit shown in Figure 5.12 as follows: 4. Loop 1: E, R1, R3 Loop 2: R3, R2, R4 Loop 3: E, R,R2, R4 Using the da ta you recorded in Table 5.4, determine how well your results demonstrate the Account for any validity of Kirchhoff's voltage law around each of the closed loops. discrepancies between theoretical and experimental results.
7.<br>After setting the power supply voltage to 15 V, measure and record the voltages V,V, V3 and<br>obser ving the polarities shown on the circuit diagram. Complete Table 5.4.<br>V.<br>V2-<br>R, = 4702<br>R, = 1 K2<br>Power<br>R2 = 330 2<br>R, = 3302<br>supply<br>15<br>Figure 5.12. Measure the voltages to verify Kirchhoff's<br>voltage law in each loop.<br>Table 5.4<br>V1<br>V2<br>V3<br>(V)<br>(v)<br>(V)<br>(v)<br>9.57<br>4.08<br>5.41<br>1,32<br>

Extracted text: 7. After setting the power supply voltage to 15 V, measure and record the voltages V,V, V3 and obser ving the polarities shown on the circuit diagram. Complete Table 5.4. V. V2- R, = 4702 R, = 1 K2 Power R2 = 330 2 R, = 3302 supply 15 Figure 5.12. Measure the voltages to verify Kirchhoff's voltage law in each loop. Table 5.4 V1 V2 V3 (V) (v) (V) (v) 9.57 4.08 5.41 1,32

Jun 10, 2022
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