In the Bohr model of the hydrogen atom, the electron moves in a circular orbit of radius 5.3 x 10-11 m with a speed of 2.2 x 10 m/s. Part C Find the magnitude of the magnetic field that the electron produces at the location of the nucleus (treated as a point). Express your answer using two significant figures. IVE ΑΣΦ A B= Submit Part D Request Answer O from the electron O toward the electron O O into the page ? Find the direction of the magnetic field that the electron produces at the location of the nucleus (treated as a point). out of the page T

University Physics Volume 2
18th Edition
ISBN:9781938168161
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Chapter7: Electric Potential
Section: Chapter Questions
Problem 105AP: An electron has an initial velocity of 5.00106m/s in a uniform 2.0010m/s electric field. The field...
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In the Bohr model of the hydrogen atom, the
electron moves in a circular orbit of radius
5.3 x 10-11 m with a speed of 2.2 x 106 m/s.
Part C
Find the magnitude of the magnetic field that the electron produces at the location of the nucleus (treated as a point).
Express your answer using two significant figures.
[Π| ΑΣΦ
B=
Submit
Part D
^
Request Answer
Ofrom the electron
O toward the electron
O out of the page
O into the page
Submit
Find the direction of the magnetic field that the electron produces
?
Request Answer
T
the location of the nucleus (treated as a point).
Transcribed Image Text:In the Bohr model of the hydrogen atom, the electron moves in a circular orbit of radius 5.3 x 10-11 m with a speed of 2.2 x 106 m/s. Part C Find the magnitude of the magnetic field that the electron produces at the location of the nucleus (treated as a point). Express your answer using two significant figures. [Π| ΑΣΦ B= Submit Part D ^ Request Answer Ofrom the electron O toward the electron O out of the page O into the page Submit Find the direction of the magnetic field that the electron produces ? Request Answer T the location of the nucleus (treated as a point).
In the Bohr model of the hydrogen atom, the
electron moves in a circular orbit of radius
5.3 x 10-11 m with a speed of 2.2 x 106 m/s.
Part A
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 using two significant figures.
E=
Submit
Part B
[Π| ΑΣΦ
Request Answer
O
Find the direction of the electric field that the electron produces at the location of the nucleus (treated as a point).
Ofrom the electron
O toward the electron
O
out of the page
into the page
N/C
Submit Request Answer
Transcribed Image Text:In the Bohr model of the hydrogen atom, the electron moves in a circular orbit of radius 5.3 x 10-11 m with a speed of 2.2 x 106 m/s. Part A 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 using two significant figures. E= Submit Part B [Π| ΑΣΦ Request Answer O Find the direction of the electric field that the electron produces at the location of the nucleus (treated as a point). Ofrom the electron O toward the electron O out of the page into the page N/C Submit Request Answer
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