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castortr0y [4]
2 years ago
11

A medical cyclotron used in the production of medical isotopes accelerates protons to 6.5 MeV. The magnetic field in the cyclotr

on is 1.9 T.
(a) What is the diameter of the largest orbit, just before the protons exit the cyclotron? Express your answer with the appropriate units. d = 57 cm Previous
(b) A proton exits the cyclotron 1.0 ms after starting its spiral trajectory in the center of the cyclotron. How many orbits does the proton complete during this 1.0 ms?
Physics
1 answer:
Leni [432]2 years ago
4 0

Given Information"

Kinectic energy = 6.5 MeV

magnetic field = B = 1.9 T

Period = T = 1 ms

Required Information"

Diameter = d = ?

Answer:

d = 38.6 cm

f = 1000

Explanation:

(a) What is the diameter of the largest orbit, just before the protons exit the cyclotron?

The radius and hence the diameter of the largest orbit can be found by using

r = mv /|q|B

Where q = 1.60x10⁻¹⁹ C and m = 1.67x10⁻²⁷ kg and v is the speed of the particle  which can be found by using

v = √2K /m

Where K is the kinetic energy in Joules.

1 eV is equal to 1.60x10⁻¹⁹ J

K = 6.5x10⁶*1.60x10⁻¹⁹ = 1.04x10⁻¹² J

v = √2*1.04x10⁻¹² /1.67x10⁻²⁷

v = 35.29x10⁶ m/s

r = 1.67x10⁻²⁷*35.29x10⁶ /1.60x10⁻¹⁹*1.9

r = 0.193 m

d = 2r

d = 2*0.193 = 0.386

or d = 38.6 cm

(b) A proton exits the cyclotron 1.0 ms after starting its spiral trajectory in the center of the cyclotron. How many orbits does the proton complete during this 1.0 ms?

The period T and frequency (number of rotations per second) are related as

f = 1/T

f = 1/0.001

f = 1000

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Pie

Answer:

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7 0
2 years ago
Assuming both graduated cylinders are holding water at room temperature, which cylinder has more thermal energy?
natta225 [31]

Answer:

The correct option is;

The graduate cylinder with more water has more thermal energy because it is holding more water molecules

Explanation:

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A solution is oversaturated with solute. Which could be done to decrease the oversaturation?
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Explanation:
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3 0
2 years ago
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Calculate the current through a 10.0-m long 22-gauge nichrome wire with a radius of 0.321 mm if it is connected across a 12.0-V
Kipish [7]

Answer:

Therefore,

Current through Nichrome wire is 0.3879 Ampere.

Explanation:

Given:

Length = l = 10 meter

Radius = r = 0.321\ mm =0.321\times 10^{-3}\ meter

Resistivity=\rho=1.00\times 10^{-6}\ ohm\ meter

V = 12 Volt

To Find:

Current, I =?

Solution:

Resistance for 0.0-m long 22-gauge nichrome wire with a radius of 0.321 mm if it is connected across a 12.0-V battery given as

R=\dfrac{\rho\times l}{A}

Where,

R = Resistance

l = length

A = Area of cross section = πr²

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Substituting the values we get

R=\dfrac{1\times 10^{-6}\times 10}{3.14\times (0.321\times 10^{-3})^{2}}

R=\dfrac{1\times 10^{-5}}{3.23\times 10^{-7}}

R=\dfrac{1\times 10^{2}}{3.23}

R=30.95\ ohm

Now by Ohm's Law,

V= I\times R

Substituting the values we get

I=\dfrac{V}{R}=\dfrac{12}{30.95}=0.3876\ Ampere

Therefore,

Current through Nichrome wire is 0.3879 Ampere.

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