In the figure, an electron with an initial kinetic energy of 3.70O keV enters region 1...
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In the figure, an electron with an initial kinetic energy of 3.70O keV enters region 1 at time t = 0. That region contains a uniform magnetic field directed into the page, with magnitude 0.00800 T. The electron goes through a half-circle and then exits region 1, headed toward region 2 across a gap of 27.0 cm. There is an electric potential difference AV = 2100 V across the gap, with a polarity such that the electron's speed increases uniformly as it traverses the gap. Region 2 contains a uniform magnetic field directed out of the page, with magnitude 0.0217 T. The electron goes through a half-circle and then leaves region 2. At what time t does it leave? Region 1 Region 2 O B2 Number Units In the figure, an electron with an initial kinetic energy of 3.70O keV enters region 1 at time t = 0. That region contains a uniform magnetic field directed into the page, with magnitude 0.00800 T. The electron goes through a half-circle and then exits region 1, headed toward region 2 across a gap of 27.0 cm. There is an electric potential difference AV = 2100 V across the gap, with a polarity such that the electron's speed increases uniformly as it traverses the gap. Region 2 contains a uniform magnetic field directed out of the page, with magnitude 0.0217 T. The electron goes through a half-circle and then leaves region 2. At what time t does it leave? Region 1 Region 2 O B2 Number Units
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Related Book For
Fundamentals of Physics
ISBN: 978-0471758013
8th Extended edition
Authors: Jearl Walker, Halliday Resnick
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