IP A charged particle moves in a horizontal plane with a speed of 8.90x106 m/s. When this particle encounters a uniform magnetic field in the vertical direction it begins to move on a circular path of radius 16.0 cm. ▾ Part A If the magnitude of the magnetic field is 1.22 T, what is the charge-to-mass ratio (q/m) of this particle? Submit Part B IVE] ΑΣΦ| Request Answer → C DWG ? O greater O less O the same C/kg If the radius of the circular path were greater than 16.0 cm, would the corresponding charge to mass ratio be greater than, less than, or the same as that found in part (a)? (Assume that the magnetic field remains the same.).

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Chapter1: Units, Trigonometry. And Vectors
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Item 11
IP A charged particle moves in a horizontal plane with a speed of 8.90×106
m/s. When this particle encounters a uniform magnetic field in the vertical
direction it begins to move on a circular path of radius 16.0 cm
Part A
If the magnitude of the magnetic field is 1.22 T, what is the charge-to-mass ratio (q/m) of this particle?
9
Submit
Part B
—| ΑΣΦ
greater
less
Request Answer
Submit
O the same
?
Request Answer
C/kg
If the radius of the circular path were greater than 16.0 cm, would the corresponding charge to mass ratio be greater than, less than, or the same as that found in part (a)? (Assume
that the magnetic field remains the same.)
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11 of 15
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Transcribed Image Text:Item 11 IP A charged particle moves in a horizontal plane with a speed of 8.90×106 m/s. When this particle encounters a uniform magnetic field in the vertical direction it begins to move on a circular path of radius 16.0 cm Part A If the magnitude of the magnetic field is 1.22 T, what is the charge-to-mass ratio (q/m) of this particle? 9 Submit Part B —| ΑΣΦ greater less Request Answer Submit O the same ? Request Answer C/kg If the radius of the circular path were greater than 16.0 cm, would the corresponding charge to mass ratio be greater than, less than, or the same as that found in part (a)? (Assume that the magnetic field remains the same.) < 11 of 15 Review >
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