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The figure (Figure 1) shows a circuit that illustrates the concept of loops, which are colored red and labeled loop 1 and loop 2.
The figure (Figure 1) shows a circuit that illustrates the concept of loops, which are colored red and labeled loop 1 and loop 2. Loop 1 is the loop around the entire circuit, whereas loop 2 is the smaller loop on the right To apply the loop rule you would add the voltage changes of all circuit elements around the chosen loop. The figure contains two junctions (where three or more wires meet)-they are at the ends of the resistor labeled R3. The battery supplies a constant voltage V, and the resistors are labeled with their resistances. The ammeters are ideal meters that read I and I respectively. The direction of each loop and the direction of each current arrow that you draw on your own circuits are Figure Loop 1 Loop 2 R R (A Vb ww R3 1 of 1 Apply the junction rule to the junction labeled with the number 1 (at the bottom of the resistor of resistance R2). Answer in terms of given quantities, together with the meter readings I1 and I2 and the current I3. View Available Hint(s) EI=0=12+13 Submit Previous Answers ? Part C Apply the loop rule to loop 2 (the smaller loop on the right). Sum the voltage changes across each circuit element around this loop going in the direction of the arrow Remember that the current heter is ideal. Express the voltage drops in terms of Vb, 12, 13, the given resistances, and any other given quantities. View Available Hint(s) (AV)=0= R Submit Previous Answers Part D ? Now apply the loop rule to loop 1 (the larger loop spanning the entire circuit) Sum the voltage changes across each circuit element around this loop going in the direction of the arrow
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