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In a previous analysis of the setup shown in (Figure 1), you applied RAR 1 to determine the magnetic force on each of the 4
In a previous analysis of the setup shown in (Figure 1), you applied RAR 1 to determine the magnetic force on each of the 4 segments of the current carrying loop placed magnetic field B. The results are: Learning Goal: Magnetic forces on segment (a) and (d): shown in the figure. RHR 2 and RHR 1 For Current Loop - Two Approaches You will use two approaches to analyze a current loop placed in an external Magnetic force on segment (b): perpendicularly INTO the page magnetic field. Magnetic force on segment (c): perpendicularly OUT of the page External magnetic field means that it is generated by other sources, NOT by the Net force on the entire loop: ZERO current loop we are analyzing. However, under the four magnetic forces on the 4 segments of the loop, the loop will turn or rotate if an axle is installed through the loop as shown. A current / = 1.24 A flows in the plane square current loop with each side of a length L = 2.7 m . The loop has 1 turn. The magnetic field is B = 1.44 T Part A - In Figure 1, what is , the net torque due to the interaction of the current loop with the magnetic field? Enter a regular number with 3 digits after the decimal point. Express your answer in newton-meters. View Available Hint(s) Figure AEd
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