1. m1 2. + 3. m2
Q: A proton moves in a circular orbit 150 mm in radius that is perpendicular to a uniform 0.25…
A: Approach to solving the question: Lorentz force law. Detailed explanation:
Q: An electron enters a region of uniform magnetic field and moves in a semicircular path as shown in…
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Q: A charged particle moves in a straight line between points A and B. Which of the following is most…
A: If an object changes its position with respect to its surroundings with time, then it is called in…
Q: In previous chapters, we looked at how to determine the electric dipole moment for charge…
A: In this question we are given that in previous chapters, we looked at how to determine the electric…
Q: Astronauts discover a planet with a radius of 3200 km without a magnetic field. To create a magnetic…
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Q: Xx F into page To the left Downward To the right zero left Determine the magnetic field direction…
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Q: Three infinitely long parallel wires carry currents /1 = 400.0 A, 2 = 300.0 A, and l3 = 500.0 A in…
A: Part (a) Given: The current in wire 1 is I1=400.0 A. The current in wire 2 is I2=300.0 A. The…
Q: The magnetic field in the figure is decreasing at the rate 0.2 T/s. (Figure 1) You may want to…
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Q: Two long straight current-carrying wires are lined up parallel to one another at a distance d.…
A: I1 = 4 A I2 = 2 A magnetic field at the midpoint (B) = 3.9×10-6 T let the distance between the two…
Q: Two long straight current-carrying wires are lined up parallel to one another at a distance d.…
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Q: Three particles (proton, electron, and neutron) start to move right, as shown in the figure.…
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Q: What is the maximum force on an aluminum rod with a 0.100-μC charge that you pass between the poles…
A: Given: q = 0.1 micro coulomb B =1.5 T v = 5 m/s
Q: A magnet in the form of a cylindrical rod has a length of 6.52 cm and a diameter of 1.43 cm. It has…
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Q: An electron enters a region that contains a magnetic field directed into the page as shown. The…
A: Given data Angle, θ=300 Magnetic field is into the page Force on the moving charge by magnetic…
Q: The magnitude of the magnetic field produced by a long, straight wire is proportional to the current…
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Q: An electron moving in the plane of the page at an angle of 30° to the horizontal enters a region…
A: angle=30 degree
Q: a) Two wires are 20 cm apart. The top wire carries a current of carry 10 A, and the bottom wire…
A: (a)The magnetic force between two current carrying conductor per unit length is given by…
Q: The charge q enters a region of uniform magnetic field B (pointing into the page) with velocity a v…
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Q: the instant the positively charged body is at the origin, the magnetic field at point P due to the…
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Q: The magnetic field a distance 2 cm from a long straight current-carrying wire is 2.0 x 105 T. What…
A: Given Magnetic field is given as B=2.0×10-2 T Distance from the current-carrying conductor is r=2…
Q: Two long straight current-carrying wires are lined up parallel to one another at a distance d.…
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Q: A particle with a charge of -3.5×10−8 C is moving with an instantaneous velocity of magnitude 50.0…
A: The velocity in the x-direction is calculated as, The magnetic field in -x direction is, The…
Q: Review a magnetic dipole moment model made of the motion of electrons orbiting the nucleus of an…
A: We will first find the current due motion of electron around proton then simply we find the…
Q: After being accelerated to a speed of 1.89x105 m/s, the particle enters a uniform magnetic field of…
A: Given: Speed of particle = 1.89 ×105 m/s Magnetic field strength = 1.00 TRadius of circle = 34.0 cm…
Q: A closed-current loop is commonly referred to as a magnetic dipole and the term IA (current * area…
A: Given data: Radius of current loop is, r=2.0 cm=0.02 m. Current through loop is, I=2.0 mA=2.0×10-3…
Q: A magnet produces a 0.300 T field between its poles, directed to the east. A dust particle with…
A: Given, q= -3.9*10-18C B= 0.3 T v= 0.3cm/s= 3*10-3m/s
Q: Suppose that the dipole moment associated with an iron atom of an iron bar is 1.7 x 10-23 J/T.…
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Q: Problem 1 Two wires are separated by a distance d = 10.0 cm, with each carrying a current of I= 5.00…
A: The magnetic field produced at a distance r from a current carrying wire is given as B=μoI2πr The…
Q: What magnetic field is required in order to confine a proton moving with a speed of 4.0 × 106 m/s to…
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Q: You have three metal bars, labeled 1-3. Each bar has two ends, A and B. You make the following…
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Q: A magnet in the form of a cylindrical rod has a length of 5.47 cm and a diameter of 1.30 cm. It has…
A: Length, L = 5.47 cm = 0.0547 m Diameter, d = 1.30 cm Radius, r = d/2 = 0.65 cm = 0.0065 m…
Q: A magnet in the form of a cylindrical rod has a length of 4.90 cm and a diameter of 0.920 cm. It has…
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Q: 3. Three particles travel through a region of space where the magnetic field is out of the page, as…
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Q: A horizontal compass is placed 0.6 cm due South from a straight vertical wire carrying a 5.5 A…
A: a)1.884 x 10-4 Tb) 87.67o from East (counterclockwise)Explanation:
Two magnetic dipoles m1 and m2 (equal in magnitude) are oriented in three different ways. Which ways produce a dipole field at large distances? Briefly explain your reasoning.
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- Question 2: Consider infinitely long three wires below. To have a zero net magnetic force (per unit length) on each wire, what would be the relation between the currents and their separations? I2 I3 a bA wire with radius 5 cm has a current of 7 A which is distributed uniformly through its cross sectional area. If you were to use ampere’s law to calculate the magnetic field at a distance of 2 cm from the center of the wire, what would be the current enclosed? 0.124 A 0.0529 A 1.12 A 0.231 AA particle of charge +6.9 µC and mass 4.7 × 10-8 kg is traveling perpendicular to a 2.0-T magnetic field, as the drawing shows. The shown is free to change, what is the furthest possible position where the particle's speed of the particle is 58 m/s. If the angle subsequent path will intersect the y axis? Number Units X x * نا x * (into page) x
- Hugs and Kisses. Four long, straight, conducting wires lie along a single plane in parallel with one another. The direction of the current flowing each wire is opposite to one another alternating as shown in the figure. The wires are separated by a distance 11.0 [cm] with one another. What is the magnitude of the magnetic field, Bnet, at point P at a distance 22.0 [cm] from the center of the configuration if the magnitude of the current flowing for each of the wires is 50.0 [A]? 22 cm хохо 11 cm O A. 1.16 × 10−4 [T] B. 1.44 × 10-4 [T] ○ c. 2.73 × 10–5 [T] O D. 7.19 × 10-5 [T] 11 cm 11 cmA proton moving in the positive x direction with a speed of 9.7 x 10° m/s experiences zero magnetic force. When it moves in the positive y direction it experiences a force of 1.5 x 10-13 N that points in the positive z direction. Determine the magnitude and direction of the magnetic field. magnitudeA long wire, parallel to the ground, carries a current toward the east in a magnetic field that is directed due south. What is the direction of the magnetic force on the wire? east O vertically downward O north O west O vertically upward
- A 45.1 C charge is moving with a velocity of 39.6 m/s in the +x-direction. A magnetic field of 89 T is point in the -x-direction. What is the force (in N) on this charge?Two straight, current carrying wires with lengths of 18m are parallel to each other and are separated by 48.2 cm. What is the magnitude of the force exerted on each wire by the other wire if they are each carrying currents of 281 Amps?Two long straight current-carrying wires are lined up parallel to one another at a distance d. Currents of 4 A and 2 A flow through the wires, both in the same direction generating the field of 9.2x10-6 T at a midpoint between them. Calculate the distance between the wires. Give your answer in SI units. Use Ho = 4x × 10-7 Hm²1.
- The earth’s field departs from its dipole shape substantially at large distances (greater than about 30,000 km). What agencies may be responsible for this distortion?Show the magnetic dipole moment m using an explanation of physical and mathematical approaches. Show the magnetization vector M using an explanation of physical and mathematical approaches.Figure below shows two long straight wires. (a) Find the direction and magnitude of the totalmagnetic field at point P. (b) Find the direction and magnitude of the total magnetic field at pointQ in the middle between the wires.