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Unformatted text preview: . Partial credit will be given for a well communicated problem solving strategy based on correct physics. Each problem is worth 25 points. For each problem it is expected that a picture (setup), procedure (what is the plan and physics involved), solution (the solution path and final answer) and evaluation of the solution (does it make sense, why or why not) is included. Each of the multiple choice questions is worth 5 points each. Relevant Equations Geometric Optics: Special topics in optics: Power of a lens: Power of Accommodation (Eye): ⁄ ( )( Electric Forces/Potential ⃗̂ ⃗ ̂ ⃗ ⃗⃗ ⃗ ̂ ∫ ∮⃗ ⃗ ) Angular magnification of Simple Magnifier: Special topics in Electric Interaction: Electric dipole moment: ⃗ Energy electric dipole: ⃗ ⃗⃗ of a long, straight wire: ⃗ () Capacitance: ⁄ Energy of a Capacitor: Magnetic Forces/Fields/Induction ⃗ ⃗ Magnetic dipole moment: ̂ ⃗ Torque on a Magnetic Dipole: ⃗ ⃗ ⃗⃗ Potential energy of a magnetic dipole: ⃗ ⃗⃗ NMR procession frequency: ⃗⃗ ⃗⃗ ⃗ ⃗ ̂ ∫ ⃗...
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This test prep was uploaded on 03/13/2014 for the course PHYS 1201W taught by Professor Kennethheller during the Fall '13 term at Minnesota.

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