Show that the units A .m2 and J/T for the Bohr magneton are equivalent.
Q: The angular momentum of a mass distribution where a differential element particle of mass m with…
A:
Q: 4. Find the Magnetic field H which is in free space (3, ,-10). 4 free space's magnetic vector…
A: Concept used: Curl of magnetic vector potential gives magnetic field intensity.
Q: î × ƒ = k‚ ƒ × k = î, k×î=j, A× B = -B × A, |Ã× B|= AB sin 0, FB = qv×B,H R = = mv ‚ FÅ = IL × B. qB…
A: The components of the velocity are vx=−3500m/s and vy=7000m/sExplanation:The magnetic force on a…
Q: Using the magnetic moment, you found to calculate the current using µ =N I (Area). Take the radius…
A: Given, Number of turns = 1 Magnetic moment = 2.00 × 10^-8
Q: An electron is at rest in an oscillating magnetic field along the z-direction with B₂=B₁ cos(wt)…
A:
Q: The electron moves with speed v = (2i- xj)*10^6 ms^-1 and enters the homogeneous magnet field B =…
A: The objective of the question is to calculate the angular speed of rotation of the electron, the…
Q: A 15 turn circular wire loop that lies in the xy-plane has a diameter of 0.30 m. A current of 1.5 A…
A:
Q: If an electron in a particular atom has an orbital magnetic quantum number of 1 , how much energy is…
A: The energy associated with the orientation of an electron's magnetic dipole moment in an external…
Q: If an electron in an atom has an orbital angular momentum with m = 4, what are the components (a)…
A: As per our guidelines, we can answer only 3 subparts. Please resubmit remaining parts.
Q: A uniform magnetic field is introduced into the experimental layout shown in figure QB2a, with the…
A: Solution: Given: Part (A): V = potential difference between the plates = 4000 V d = spacing between…
Q: In the figure, an electron accelerated from rest through potential difference V1=1.38 kV enters the…
A:
Q: If an electron in an atom has an orbital angular momentum with my = 5, what are the components (a)…
A:
Q: Consider a simple hydrogen atom where an electron orbits around a proton. Suppose a small magnetic…
A:
Q: estimate the current that an electric car would have to provide to its motor such that it can do…
A: Given: τ→ = μ→×B→ = IA→×B→Initial speed = u =0 kphFinal speed == v = 100 kphTime = 3sec Magnetic…
Show that the units A .m2 and J/T for the Bohr magneton are
equivalent.

Trending now
This is a popular solution!
Step by step
Solved in 2 steps

- Using the magnetic moment, you found to calculate the current using µ =N I (Area). Take the radius of the circular loop as 0.01 meters in order to calculate its area. My magnetic moment is 2.00E-8 All my data is attached please find the area and currentWhat is k r x w and t?Problem 2 Show that in a current-free volume of space, a static magnetic field can never have a local maximum by considering V(B· B) · da, where S is the surface of a small volume V containing a point P in space.
- If an electron in an atom has an orbital angular momentum with m₁ = 4, what are the components (a) Lorb,z and (b) µorb,z? If the atom is in an external magnetic field that has magnitude 33 mT and is directed along the z axis, what are (c) the potential energy Uorb associated with the electron's orbital magnetic dipole moment and (d) the magnitude of the potential energy Uspin associated with the electron's spin magnetic dipole moment? If, instead, the electron has m₁ = -2, what are (e) Lorb,z, (f) Horb,z, (g) the potential energy orb associated with the electron's orbital magnetic dipole moment and (h) the magnitude of the potential energy Uspin associated with the electron's spin magnetic dipole moment? (a) Number Units (b) Number Units (c) Number i Units (d) Number Units (e) Number i Units (f) Number امل Number Hi Units Units > >A flat, square surface with side length 3.15 cm is in the xy -plane at z=0 . Calculate the magnitude of the flux through this surface produced by a magnetic field B⃗ =( 0.150 T)i^+( 0.300 T)j^−( 0.475 T)k^ . Express your answer in webers.Assume that the magnitude of the magnetic field outside a sphere of radius R is B = Bo(R/r)2, where Bo is a constant. Determine the total energy stored in the magnetic field outside the sphere and evaluate your result for Bo = 5.00x 10-5 T and R = 6.00x 106 m, values appropriate for the Earth's magnetic field.