Tube B (into paper) (cutaway x view), b. Capacitor plates X X A velocity selector is used in accelerator mass spectrometry to select particles based on their speed. The velocity selector is composed of electric and magnetic fields, such that particles with the correct charge to mass ratio and speed will be unaffected, and other particles will be deflected. Choose the correct statement regarding this velocity selector: faster moving negatively charged particles will be deflected upwards. O faster moving positively charged particles will be deflected upwards. particles with greater charge will be deflected downwards. particles with greater charge will be deflected upwards. the E-Field and the B-Field must be in opposite directions.

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Tube
B (into paper)
(cutaway
view)
b.
X x x
Сараcitor
plates
A velocity selector is used in accelerator mass spectrometry to select particles based on their speed. The velocity selector is
composed of electric and magnetic fields, such that particles with the correct charge to mass ratio and speed will be unaffected,
and other particles will be deflected.
Choose the correct statement regarding this velocity selector:
faster moving negatively charged particles will be deflected upwards.
O faster moving positively charged particles will be deflected upwards.
particles with greater charge will be deflected downwards.
particles with greater charge will be deflected upwards.
the E-Field and the B-Field must be in opposite directions.
Transcribed Image Text:Tube B (into paper) (cutaway view) b. X x x Сараcitor plates A velocity selector is used in accelerator mass spectrometry to select particles based on their speed. The velocity selector is composed of electric and magnetic fields, such that particles with the correct charge to mass ratio and speed will be unaffected, and other particles will be deflected. Choose the correct statement regarding this velocity selector: faster moving negatively charged particles will be deflected upwards. O faster moving positively charged particles will be deflected upwards. particles with greater charge will be deflected downwards. particles with greater charge will be deflected upwards. the E-Field and the B-Field must be in opposite directions.
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