7. Considering the idea of transformers, there are two primary types: step-up and step-down. For a step-up transformer,

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7. Considering the idea of transformers, there are two primary types: step-up and step-down. For a step-up transformer,

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7. Considering the idea of transformers, there are two primary types: step-up and step-down. For a step-up transformer, the primary coil induces a larger potential difference, but smaller current in the secondary coil. For a step-down transformer, the primary coil induces a smaller potential difference, but larger current in the secondary coil. In our experiment, which kind of transformer did we create? Support your answer with evidence from this experiment. 8. The magnetic field perpendicular to a circular coil of 8 turns and a 25 cm diameter changes from -3.35 T to +1.40 T in a period of 50 ms. Determine the change in magnetic flux as well as the size of the induced EMF. Would this change induce a clockwise or counter-clockwise current in the coil? Show your work.
Data Stated Battery Voltage, VB:. Include both sketches you created during the experiment when submitting this lab. Calculations The calculations should be completed for your sketch of the parallel plate template only. 6.70 Distance between plates, d: 15,0 EG E2 E3 E4 E5 E6 Equipotential Line Table 2.1: Potential of Each Equipotential Line Distance from (cm) 1.5.20 3.50 1.70 .cm Outside Plates (A) Inside, Near Center (B) Inside, Near Plate (C) Percent difference for strength inside plates: Plate Electric Potential 17.3 11.6 Table 2.2: Electric Field Strength Measurements Location 7.84 3.81 1.75 v/m 2.02 V/m 2.37% Electric Field Strength (V/m) (V) -%
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