Answer:
0.0000000026 T
Explanation:
= Maximum electric field strength = 0.78 V/m
= Maximum magnetic field strength
c = Speed of light =
Relation between amplitudes of electric and magnetic fields is given by
The amplitude of the magnetic field is 0.0000000026 T
Answer:
The magnitude and direction of the magnetic field is 0.009014 T in the negative y direction.
Explanation:
Given that,
Speed
Acceleration
We need to calculate the magnetic field
Using formula of magnetic field
....(I)
Using newton's second law
....(II)
From equation (I) and (II)
Put the value into the formula
We need to calculate the direction of the field
Using the right hand rule, point the right hand fingers along the velocity which is in the positive z direction.
Now, if we curl the fingers along the direction of magnetic field that is in the negative y direction, then the thumb will point in the positive x direction.
Hence, The magnitude and direction of the magnetic field is 0.009014 T in the negative y direction.
Answer:
Flow stress= 9390Psi
Average flow stress= 4173.33Psi
Explanation:
Given:
Strength Coefficient = 75000psi
Strain hardening Exponent = 0.25
Gauge length = 2inches
Stretch length = 3.3 inches
Flow stress,Yf = 75000 × ln(3.3/2) × 0.25
Yf = 75000× ln(1.65) × 0.25
Yf = 75000× 0.5008 × 0.25
Flow stress = 9390Psi
Average flow stress = 75000× 0.5008 × (0.25/2.25)
Average flow stress= 4173.33psi
Answer:
N
N
Explanation:
= 1 A
= 4 A
= distance between the two wire = 5 m
= Force per unit length acting between the two wires
Force per unit length acting between the two wires is given as
N
= distance of each wire from the midpoint = 2.5 m
Magnetic field midway between the two wires is given as
Answer:
The flux through the surface of the cube is
Solution:
As per the question:
Edge of the cube, a = 8.0 cm =
Volume Charge density,
Now,
To calculate the electric flux:
(1)
where
= electric flux
= permittivity of free space
Volume Charge density for the given case is given by the formula:
(2)
Volume of cube,
Thus
Thus from eqn (2), the total charge is given by:
Now, substitute the value of 'q' in eqn (1):
Answer:
The value of the magnetic field is 2.01 T when Hall voltage is 1.735 mV
Explanation:
The frequency of the cyclotron can help us find the magnitude of the magnetic field, thus then we can compare the effect of increasing Hall voltage on the probe.
Magnetic field magnitude at initial Hall voltage.
The cyclotron frequency can be written in terms of the magnetic field magnitude as follows
Solving for the magnetic field.
Thus we can replace the given information but in Standard units, also remembering that the mass of a proton is and its charge is .
So we get
We have found the initial magnetic field magnitude of 0.636 T
Magnetic field magnitude at increased Hall voltage.
The relation given by Hall voltage with the magnetic field is:
Thus if we keep the same current we can write for both cases:
Thus we can divide the equations by each other to get
Simplifying
And we can solve for
Replacing the given information we get
We get
Thus when the Hall voltage is 1.735 mV the magnetic field magnitude is 2.01 T
B 0.56 s
C 4.3s
D 70s
B 0.56 s is the time period of a twirlers baton.
Centripetal acceleration is defined as the property of the motion of an object which traversing a circular path.
Any object that is moving in a circle and has an acceleration vector pointed towards the center of that circle is known as Centripetal acceleration.
The centripetal acceleration is given by:
a = 4π²R/T²
Given values are:
a = 47.8 m/s²
D = 0.76 m so , R = 0.76/2 = 0.38m
Using this formula,
47.8*T² = 4π² x0.38
T² =
T = 0.56 s
Therefore,
A twirlers baton is 0.76 m long and spins around its center. The end of the baton has a centripetal acceleration of 47.8 m/s2 which have time period of 0.56 s.
Learn more about Centripetal acceleration here:
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.
Answer:
C. 4.3 seconds
Explanation: