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Solution 13b

Course: PHY PHY126, Spring 2009
School: SUNY Stony Brook
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SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
Physics 127Experiment 6. Magnetic Force II.In this experiment an electronic scale will be used to determine the torque on a current-carrying coil in a uniform magnetic field. The magnetic torque on the coil is balanced with a mechanical torque produced
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
SUNY Stony Brook - PHY - PHY126
PHYSICS 127 EXPERIMENT NO. 9 RESONANCEIn this experiment, we observe the response of a series RLC circuit when it is driven by a sinusoidal voltage whose frequency can be adjusted.A. Equipment 1 Oscilloscope, 1 Function Generator, 1 Inductance Coil, 1 D
SUNY Stony Brook - PHY - PHY126
PHYSICS 127 EXPERIMENT NO. 8 LR AND LRC CIRCUITSIn this experiment, we observe the transient behavior of series LR (inductance-resistance) and LRC (inductance-resistance-capacitance) circuits.A. Equipment 1 Oscilloscope, 1 Function Generator, 1 Inductan
SUNY Stony Brook - PHY - PHY126
PHYSICS 127 EXPERIMENT NO. 7 INDUCTIONIn part I of this experiment, the voltage induced in a coil of wire by a changing magnetic flux will be observed. In part II, the magnetic field along the axis of a current loop will be precisely measured.A. Equipme
SUNY Stony Brook - PHY - PHY126
PHYSICS 127 EXPERIMENT NO. 5 MAGNETIC FORCE IIn this experiment we will determine the vertical component of the earth's magnetic field by measuring the deflection of a current-carrying wire stretched between two supports. A. Equipment 1 Power Supply, 1 P
SUNY Stony Brook - PHY - PHY126
PHYSICS 127 EXPERIMENT NO. 4 CURRENT-VOLTAGE RELATIONSHIPS AND RESISTANCEIn this experiment, the current-voltage characteristics of three electrical devices (a radio resistor, a light bulb filament, and a silicon diode) are measured. A. Equipment 1 Power
SUNY Stony Brook - PHY - PHY126
PHYSICS 127 EXPERIMENT NO. 3 CAPACITORSIn this experiment we will determine the capacitance of an unknown capacitor by observing the change in potential difference between its plates when, after being initially charged, it is connected in parallel with a
SUNY Stony Brook - PHY - PHY126
PHYSICS 127 EXPERIMENT NO. 2 E-FIELD PLOTTINGIn this experiment we will plot a series of lines of equal potential for several 2-dimensional charge distributions. Once we know the equipotentials, we can construct the corresponding electric field lines, gi
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