• Bat (a) (b) * B, (e) (c) (d) Figure 3:Q5 configurations of field lines and currents
Q: A particle with charge of -482 µC and mass of 1.8✕10-9 kg moves at velocity of 1.2✕103 ms-1 in the…
A: The magnetic force on a moving charge particle in the magnetic field is F = q v B sin A where, q…
Q: What is the magnetic force on a proton moving at 7.0 x 10^8 m/s parallel to the 7.0 x 10^-2 T…
A: Given data: Velocity (v) = 7.0×108 m/s Angle between velocity and magnetic field θ = 0° Magnetic…
Q: 1. What is the magnetic field?
A: 1. What is magnetic field? Magnetic field :- A magnetic field is a area near a magnet, electric…
Q: 1.What is the maximum force (in N) on an aluminum rod with a 0.250 µC charge that you pass between…
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Q: An aircraft whose wingspan is 15 m carries a static charge of 0.60 C. It travels at 240 m/s…
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Q: 4. Calculate the force given B = 1.50T 1 = 5.00 Cm and I = 20A. a. 1 N b. 1.5N c. 2.0N d.2.5N 5. An…
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Q: A uniform magnetic field B exerts a force F on a particle with charge q moving with velocity v at…
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Q: 1. What is the magneticfield?
A: We are authorized to answer one problem at a time, since you have not mentioned which one you are…
Q: 6. A proton moves through a uniform magnetic field, B = 5μT at a velocity, v= 8 x 10-6m/s. Calculate…
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Q: What is the initial direction of the deflection of the charged particle as it enters the magnetic…
A: What is the direction of the deflection of the charged particle.
Q: 6. A horizontal wire carries a current and is in a vertical magnetic field. What is the direction of…
A: Given: The direction of the magnetic field is vertical upward. The direction of the current is in…
Q: 1. Explain and illustration the magnetic field of a: a. Solenoid b. Current-carrying wire c.…
A: We’ll answer the first question since the exact one wasn’t specified. Please submit a new question…
Q: A straight wire carrying a 3.0-A current is in a uniform magnetic field oriented at right angles to…
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Q: proton (q = +1.602 X 10-19 C) travels at v = 3 m/s and enters the magnetic field B = 2 .5 mT, and…
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Q: A B-field (2.0 T) is oriented along the +x axis. A proton has an instantaneous velocity of 4000 m/s…
A: Given data: Magnetic field (B) = 2.0 T Velocity of proton (v) = 4000 m/s Angle (θ) = 60° Required:…
Q: What is the magnitude force on a proton moving at 2.5 x 105 m/s in a magnetic field 0.5T If the…
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Q: e-turn current loop, carrying a current of 4.34 A, is in th m magnetic field of magnitude 56.8 mT…
A: Let Us assume we have a triangle of the loop with sides of a = 61.9 cm, b = 111 cm, and c = 127 cm.…
Q: 6. Two parallel wires carry currents in the opposite directions. One current is 15 amps into the…
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Q: An electron is accelerated from rest through 2300 V and then enters a region of uniform magnetic…
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Q: A point charge q with mass m moving with a velocity of ở = vî enters a uniform magnetic field…
A: The magnetic force acting on a charged particle depends upon the charge of the particle, velocity of…
Q: A stationary positive charge +Q is located in a magnetic field B, which is directed toward the right…
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Q: n a few sentences, describe how magnetic force is defined. We've lear it the right hand rule in…
A: Magnetic force is a consequence of electromagnetic force and is caused due to the motion of charges.…
Q: 7. A proton is moving through a magnetic field in a direction perpendicular to the field as shown…
A: Given: The strength of the magnetic field is 0.13 T. The magnitude of the magnetic force on the…
Q: A positively-charged point particle, q, with a speed of v = 3.0 x 105 m/s enters a uniform magnetic…
A: Lorentz law When a moving charge particle enters a uniform magnetic field it experiences a force if…
Q: A circular current loop of radius R carries current I. There are two region of uniform magnetic…
A: Given, Radius of the circular loop=R current=I
Q: What happens when you place a test charge inside a uniform magnetic field? The test charge will…
A: Given: A test charge is placed inside a uniform magnetic field.
Q: A conducting loop in the shape of a circle of a radius R=1 as shown in Figure 6. Calculate the…
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Q: A horizontal wire length of 3.0 m carries a current of 6.0 A and is oriented so that the current…
A: Length of wire (L) = 3 m Current (I) = 6 A direction of current = west Magnetic field strength (B) =…
Q: There is a uniform magnetic field pointing in the +y direction and you'd like the force on a +q…
A: Given direction of uniform magnetic field B in the +y direction. direction of force on +q charge in…
Q: positively charged particle moving due east enters a magnetic field directed due south. Which of…
A: magnetic force F̅=q(v̅×B̅)
Q: 1. Calculate the magnetic force exerted on a moving electron (v= 2x105 m/s) in a given magnetic…
A: Given. Q = 1.67*10-19 V = 2*10⁵ m/s B = 6mT Angle = 40°
Q: 5. The magnitude of the magnetic force of a 68 cm current-carrying conductor with 35 C of charge…
A: Given : L = 68 cm = 0.68 m q = 35 C t = 5 s B = 12.3 T θ = 0° (because current is parallel to field…
Q: 1) An electron is traveling in the +y direction near a current-carrying wire as shown. The wire…
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Q: An electron accelerates from rest through a uniform electric field, then moves into a magnetic field…
A: Potential difference, V = 99 V Magnetic field, B = 0.75 T Charge on electron, q = 1.6×10-19 C Mass…
Q: A moving, positively charge particle enters a region that contains a uniform magnetic field as shown…
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Q: 6 5. A. B. An electron is placed inside a uniform magnetic field of magnitude 5 T. If the electron…
A: Given Data:- Magnitude of the magnetic field is B=5T Velocity of the electron parallel to the…
Q: If a proton is moving in a circular motion at a rate 5 x 10 m/s in 5 µm: a. Solve the magnetic field…
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Q: 15. What is the magnitude force on a proton moving at in a magnetic field 0.5T If the velocity id…
A: The magnitude and direction of Force on a charged moving particle depends depend on the velocity of…
Q: A charged particle, q = +5 µC, travels at a speed of 200 m/s in a uniform magnetic field of 0.5T at…
A: Whenever a charged particle passes through a magnetic field, it experience a magnetic force…
4. Q5. What is the direction of the velocity of a negative charge that experiences the magnetic force in each of the five cases shown in Figure 3, assuming it moves perpendicular to B?
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