In Figure P19.21, the cube is 43.0 cm on each edge. Four straight segments of wire -- ab, bc, cd, and da -- form a closed loop that carries a current of 7 = 5.30 A in the direction shown. A uniform magnetic field of magnitude B = 0.0200 T is in the positive y-direction. Determine the magnitude and direction of the magnetic force on each segment. (Please give the magnitudes to three decimal places.) B Figure P19.21 Segment F(N) Direction ab N Direction bc N -Direction- cd N -Direction- da N Direction- Submit Answer
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A: Mass of the particle, m = 11.3 g=> m = kg=> m = 0.0113 kgCharge, q = 91.5μC=> q = C=> q…
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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: A particle of charge +7.4 µC and mass 4.1 × 10-8 kg is traveling perpendicular to a 1.7-T magnetic…
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A: (I guess the B is at the right end of the wire as the diagram is not given) The diameter of the loop…
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Q: Problem 1. In figure below, a particle moves along a circle in a region of uniform magnetic field of…
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A: Given value--- side = 1.8 cm. current = 6 Amp. magnetic field = 0.71 T. angle = 37 degree. We have…
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Q: An electron moves with a speed of 5.0 × 104 m/s perpendicular to a uniform magnetic field of…
A: Given: Speed of the electron =5.0×104 m/s Magnitude of the uniform magnetic field =0.20 T Charge of…
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 particle with a charge of Q = +1 µC has a velocity of 2x10' m/s at an angle of 30 degrees with…
A: force on a moving charge F = q v B Sin θ θ= angle between v and B DIRECTION OF FORCE = V X B…
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Q: 2 = 8.00 A. (See figure below. Assume the conductors lie in the plane of the page.) y 12 1₁ X a)…
A: Current = I1 =6 Amp I2= 8 Amp Distance = r = 12 cm
Q: A particle with charge q = 1.5 C and a long wire carrying current I = 3 A is on the xy-plane at the…
A: Charge q=1.5 C Current through the wire i=3 A Distance of charge from the wire d=0.5 cm Velocity of…
Q: A particle of mass 11.2 g and charge 60.4 μC moves through a uniform magnetic field, in a region…
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Q: In the figure, four long straight wires are perpendicular to the page, and their cross sections form…
A: Ans Given Now we know that there is force of attraction when current is in same direction and force…
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Q: A wire segment 1.2 m long carries a current /= 3.5 A and is oriented as shown in the figure. A…
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Q: An electromagnet produces a magnetic field of 0.550 T in a cylindrical region of radius 2.50 cm…
A: We have a cylindrical region with magnetic field B=0.550T The cylinder has a radius of r=2.50 cm A…
Q: A 11.38m wire carries a current of 96.39mA perpendicular to a uniform magnetic field of magnitude…
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- A proton moves in the magnetic field B = 0.42% T with a speed of 1.4 x 107 m/s in the directions shown in the figure. (Figure 1) Figure (a) z 45° B (b) z f V 1 of 1 B Part A In figure (a), what is the magnetic force F on the proton? Give your answer in component form. Enter the x, y, and z components of the force separated by commas. ΠΫΠΙ ΑΣΦ F₂. Fy, F2 = 0i+6.50-10-1³^ƒ + ok Submit Part B 13 j Previous Answers Request Answer ? Submit Previous Answers Request Answer In Figure (b), what is the magnetic force on the proton? Give your answer in component form. Enter the x, y, and z components of the force separated by commas. -5| ΑΣΦ F2, Fy, F₂ = 0+0+ 9.4.10-13 N ? NA wire of length t = 0.75 m is conducting a current of %3D i = 7.5 A toward the top of the page and through a B = 3.0 T %3D %3D uniform magnetic field directed into the page, as shown in the figure. What is the magnitude F of the magnetic force on the wire? F = What is the direction of the magnetic force on the wire? O right O out of the screen O up O left O down O into the screenA wire with four right-angle bends carries a current of 3.2 Amps in the direction shown by the arrowheads in the diagram. The wire is within a region where a uniform magnetic field is applied given by the array of X’s in the diagram. The magnitude of the magnetic field is 8 mT. Determine the net force the magnetic field exerts on the wire. Express your answer in terms of components and unit vectors.
- A long, straight wire carrying a current of 344 A is placed in a uniform magnetic field that has a magnitude of 7.54 × 10-3 T. The wire is perpendicular to the field. Find a point in space where the net magnetic field is zero. Locate this point by specifying its perpendicular distance from the wire.A wire carrying 1.5 A passes through a 48-mT magnetic field. The wire is perpendicular to the field and makes a quarter-circle turn of radius 21 cm as it passes through the field region, as shown in (Figure 1). Figure 1.5 A- X X X X X 21 cm Bin X X X X X X Part A Find the magnitude of the magnetic force on this section of wire. Express your answer in newtons. F= Submit Part B Η ΑΣΦ Submit Request Answer ΕΠ ΑΣΦ Find the direction angle of the magnetic force on this section of wire. The angle is measured from the rightward direction toward the upward direction. Express your answer in degrees. " Request Answer Ò A 1 ? < Return to Assignment Provide Feedback N P ?One long wire lies along an x axis and carries a current of 42 A in the positive x direction. A second long wire is perpendicular to the xy plane, passes through the point (0, 6.2 m, 0), and carries a current of 58 A in the positive z direction. What is the magnitude of the resulting magnetic field at the point (0,0.90 m, O)? Number Units
- Two long straight current-carrying wires are lined up parallel to one another at a distance dd. Currents of 4 A and 2 A flow through the wires, both in the same direction generating the field of 8.7x10-6 T at a midpoint between them. Calculate the distance between the wires. Give your answer in SI units. Use μ0=4π×10−7μ0=4π×10−7 Hm-1.After being accelerated to a speed of 1.92×105 m/s , the particle enters a uniform magnetic field of strength 0.800 T and travels in a circle of radius 34.0 cm (determined by observing where it hits the screen as shown in the figure). The results of this experiment allow one to find m/q. Find the ratio m/q for this particle. Express your answer numerically in kilograms per coulomb.In the figure, two long straight wires are perpendicular to the page and separated by distance d1 = 0.75 cm. Wire 1 carries 8.0 A into the page. What are the (a) magnitude and (b) direction (into or out of the page) of the current in wire 2 if the net magnetic field due to the two currents is zero at point P located a distance d2 = 1.50 cm from wire 2?
- The cube in the figure is 30.0 cm on the edge. Four straight segments of wire - ab, bc, cd, and da - form a closed loop that carries a current I = 4.50 A in the direction shown. A uniform B = 0.078 T is in the negative z-direction. 1. Determine the magnitude of the magnetic force on segment ab. 2. The direction of the magnetic force on segment ab is 3. Determine the magnitude of the magnetic force on segment bc. 4. The direction of the magnetic force on segment bc is 5. Determine the magnitude of the magnetic force on segment cd. 6. The direction of the magnetic force on segment cd is 7. Determine the magnitude of the magnetic force on segment da. 8. The direction of the magnetic force on segment cd isThe wire has 5 segments each 1m and can rotate around the axis shown. The wire is placed in a magnetic field of 1.0 T magnitude. The direction of the magnetic field is parallel to one of the segments as shown in the figure. If the wire carries 2.0 A current, what are the magnitudes of the net magnetic force acting on the wire and the torque with respect to the axis?In the figure below, four long straight wires are perpendicular to the page, and their cross-sections form a square of edge length a = 10.5 cm. Each wire carries 8.00 A, and the currents are out of the page in wires 1 and 4 and into the page in wires 2 and 3. What is the magnitude and direction of the net magnetic force per meter of wire length on wire 4? magnitude N/m direction ° (counterclockwise from the positive x-axis) (please show units. It really helps me out)