In the Bohr model of the hydrogen atom, the electron moves in a circular orbit of radius Part A 5.3 x 10-11 m with a speed of 2.2 x 106 m/s. If we are viewing the atom in such a way that the electron's orbit is in the plane of the paper with the electron moving clockwise, find the magnitude of the electric field that the electron produces at the location of the nucleus (treated as a point). Express your answer in newtons per coulomb. E = N/C Part B Find the direction of the electric field that the electron produces at the location of the nucleus (treated as a point). from the electron toward the electron O out of the page

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In the Bohr model of the hydrogen atom, the
Part C
electron moves in a circular orbit of radius
11
5.3 x 10
m with a speed of 2.2 x 10° m/s.
Find the magnitude of the magnetic field that the electron produces at the location of the nucleus (treated as a
point).
Express your answer in teslas.
?
B =
T
Part D
Find the direction of the magnetic field that the electron produces at the location of the nucleus (treated as a
point).
from the electron
toward the electron
O out of the page
inte th e nen
Transcribed Image Text:In the Bohr model of the hydrogen atom, the Part C electron moves in a circular orbit of radius 11 5.3 x 10 m with a speed of 2.2 x 10° m/s. Find the magnitude of the magnetic field that the electron produces at the location of the nucleus (treated as a point). Express your answer in teslas. ? B = T Part D Find the direction of the magnetic field that the electron produces at the location of the nucleus (treated as a point). from the electron toward the electron O out of the page inte th e nen
In the Bohr model of the hydrogen atom, the
Part A
electron moves in a circular orbit of radius
5.3 x 10-11 m with a speed of 2.2 x 10° m/s.
If we are viewing the atom in such a way that the electron's orbit is in the plane of the paper with the electron
moving clockwise, find the magnitude of the electric field that the electron produces at the location of the
nucleus (treated as a point).
Express your answer in newtons per coulomb.
E =
N/C
Part B
Find the direction of the electric field that the electron produces at the location of the nucleus (treated as a
point).
O from the electron
toward the electron
O out of the page
Transcribed Image Text:In the Bohr model of the hydrogen atom, the Part A electron moves in a circular orbit of radius 5.3 x 10-11 m with a speed of 2.2 x 10° m/s. If we are viewing the atom in such a way that the electron's orbit is in the plane of the paper with the electron moving clockwise, find the magnitude of the electric field that the electron produces at the location of the nucleus (treated as a point). Express your answer in newtons per coulomb. E = N/C Part B Find the direction of the electric field that the electron produces at the location of the nucleus (treated as a point). O from the electron toward the electron O out of the page
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