Singly ionized carbon is accelerated through 1,250 V and passed into a mass spectrometer to determine the isotopes present. The magnitude of the magnetic field in the spectrometer is 0.2T. Determine the orbit radii ratio R1(66X)/R2(68X) for the 66x and the 68x isotopes as they pass through the field. Take M(66X)=66u, M(68X)=68u. State your answer to the nearest one thousandth of an unit.

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter30: Nuclear Physics
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Singly ionized carbon is accelerated through 1,250 V and passed into a mass
spectrometer to determine the isotopes present. The magnitude of the magnetic
field in the spectrometer is 0.2T. Determine the orbit radii ratio R1(66x)/R2(68x)
for the 66x and the 68x isotopes as they pass through the field. Take M(66x)=66u,
M(68X)=68u. State your answer to the nearest one thousandth of an unit.
Transcribed Image Text:Singly ionized carbon is accelerated through 1,250 V and passed into a mass spectrometer to determine the isotopes present. The magnitude of the magnetic field in the spectrometer is 0.2T. Determine the orbit radii ratio R1(66x)/R2(68x) for the 66x and the 68x isotopes as they pass through the field. Take M(66x)=66u, M(68X)=68u. State your answer to the nearest one thousandth of an unit.
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