> An alpha particle (q = +2e, m = 4.00 u) travels in a circular path of radius 6.18 cm in a uniform magnetic field with B = 1.20 T. Calculate (a) its speed, (b) its period of revolution, (c) its kinetic energy, and (d) the potential difference through which it would have to be accelerated to achieve this energy. Units m/s (b) Number i Units (a) Number i S (c) Number i Units eV (d) Number i Units > < > >
> An alpha particle (q = +2e, m = 4.00 u) travels in a circular path of radius 6.18 cm in a uniform magnetic field with B = 1.20 T. Calculate (a) its speed, (b) its period of revolution, (c) its kinetic energy, and (d) the potential difference through which it would have to be accelerated to achieve this energy. Units m/s (b) Number i Units (a) Number i S (c) Number i Units eV (d) Number i Units > < > >
Chapter11: Magnetic Forces And Fields
Section: Chapter Questions
Problem 31P: An alpha-particle ( m=6.641027kg , q=3.21019C ) travels in a circular path of radius 25 cm in a...
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Question
![>
An alpha particle (q = +2e, m = 4.00 u) travels in a circular path of radius 6.18 cm in a uniform magnetic field with B = 1.20 T. Calculate
(a) its speed, (b) its period of revolution, (c) its kinetic energy, and (d) the potential difference through which it would have to be
accelerated to achieve this energy.
Units
m/s
(b) Number
i
Units
(a) Number i
S
(c) Number
i
Units
eV
(d) Number i
Units
>
<
>
>](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8b5f8c93-e229-4ce9-ad45-74f0c611a8e7%2F551489ab-88ba-45f0-bb16-14153b2557e4%2Fkqj6swo_processed.jpeg&w=3840&q=75)
Transcribed Image Text:>
An alpha particle (q = +2e, m = 4.00 u) travels in a circular path of radius 6.18 cm in a uniform magnetic field with B = 1.20 T. Calculate
(a) its speed, (b) its period of revolution, (c) its kinetic energy, and (d) the potential difference through which it would have to be
accelerated to achieve this energy.
Units
m/s
(b) Number
i
Units
(a) Number i
S
(c) Number
i
Units
eV
(d) Number i
Units
>
<
>
>
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