2.66 x 10-26 kg) is traveling inside a An oxygen O²- ion (m mass spectrometer with a speed of 42.5 km/s. It is heading in the +y direction (up the page) when it enters a square-shaped region of space with side length a = magnetic field. The strength of the field is 1.6 mT, and it points -z direction (into the page). The oxygen ion enters this region on the bottom side of the square - at its midpoint, and 0.35 m that contains a uniform in the perpendicular to that side – and it exits somewhere along the top | side of the square. Determine the angle its velocity vector makes with the +y axis after it has exited the magnetic field region. (Hint: the ion's trajectory while it is inside the square is going to be the arc of a circle. Also, you may ignore Earth's magnetic field for this calculation.) X X X a X X X X X X X X

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= 2.66 x 10-26 kg) is traveling inside a
An oxygen O²- ion (m
mass spectrometer with a speed of 42.5 km/s. It is heading in the
+y direction (up the page) when it enters a square-shaped region
of space with side length a = 0.35 m that contains a uniform
magnetic field. The strength of the field is 1.6 mT, and it points
in the -z direction (into the page). The oxygen ion enters this
region on the bottom side of the square - at its midpoint, and
perpendicular to that side – and it exits somewhere along the top
side of the square. Determine the angle its velocity vector makes
with the +y axis after it has exited the magnetic field region.
(Hint: the ion's trajectory while it is inside the square is going
to be the arc of a circle. Also, you may ignore Earth's magnetic
field for this calculation.)
||x x
X X
a
||x x
X X X
%3-
Transcribed Image Text:= 2.66 x 10-26 kg) is traveling inside a An oxygen O²- ion (m mass spectrometer with a speed of 42.5 km/s. It is heading in the +y direction (up the page) when it enters a square-shaped region of space with side length a = 0.35 m that contains a uniform magnetic field. The strength of the field is 1.6 mT, and it points in the -z direction (into the page). The oxygen ion enters this region on the bottom side of the square - at its midpoint, and perpendicular to that side – and it exits somewhere along the top side of the square. Determine the angle its velocity vector makes with the +y axis after it has exited the magnetic field region. (Hint: the ion's trajectory while it is inside the square is going to be the arc of a circle. Also, you may ignore Earth's magnetic field for this calculation.) ||x x X X a ||x x X X X %3-
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