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connector 2.2. Repeat the measurements you Table 2. Coils Carrying Currents in the Opposite Direction preformed in Part1 for the voltages Area = $ Bal
connector 2.2. Repeat the measurements you Table 2. Coils Carrying Currents in the Opposite Direction preformed in Part1 for the voltages Area = $ Bal HOZIE Area - Ho Eli listed in Table 2 and record the results A HT.m HT.m HT.m of the measurements into this table. 2 0. 097 (6, 7623 x105) 2.3. Write down an expression for 4 Ho Eli in terms of net current I, 0 182 1046 x 10 -4 number of turns, N1, in coil #1 and 6 0, 277 1. 43 60 * 10 -7 number of turns, N2, in coil #2. Keep 8 in mind that each coil has 300 turns. 0. 364 0.0000 10 0. 443 2. 85-5 9 X 164 2.4. Ask your TA to check your expression for Mo Ely, then calculate its values and record them in Table 2. 2.5. Plot an Area vs / graph and apply LINESTO function to find the slope, intercept, its uncertainties, and the coefficient of determination. Record the values (including its units) below. Slope = (units) Intercept = (units) R2 = Take a screenshot of the graph and attach it to your lab report. Ampere's Law Page 4 of 6UIC Physics Department Physics 142 2.6. Calculate the difference between Mo E I; and Area and record the results in Table 2. Then, find its average value and its uncertainty and record the results below. (Area - Mo Eli) = MT . m 2.7. Determine the permeability of free space, Mo,exp2, by using your experimental results above. Show your work. Apply error propagation to estimate the error associated with your experimental Ho value. Show your work. Ho,exp2 = (units)
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