Determine the magnetic field (in terms of I, a, and d) at the origin due to the current loop in the figure below. The loop extends to infinity above the figure. (Use any variable or symbol stated above along with the following as necessary: μ and π.) magnitude Bo Hola direction a + d² into the page d a 0 +a I
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- Consider a current-carrying wire (see figure) composed of a quarter-circular arc with radius Rand two straight segments with length L. If the wire carries a current I, and is immersed in a magnetic field with strength B directed into the page, what is the total magnetic force on the entire wire segment? L L R O A. (V2ILB+IRB) j O B. (V2ILB+IRB) (–') Oc. (V2ILB+ V2IRB) ; O D. (V2ILB+ V2IRB) (–j) ххDetermine the direction of the vector U, B, or F that is missing from the pair of vectors shown in each scenario. Here, u is the velocity vector of a moving positive charge, B is a constant and uniform magnetic field, and F is the resulting force on the moving charge. 1. 4. OB F ta V F O 2. 5. B TE ↑> V F Answer Bank - 3. 6. F OV TE F ĮPlease asap
- All of Question 1Find the direction of the magnetic field at each of the indicated points. What is the direction of the magnetic field Bc at Point C? O Bc is out of the page. O Bc is into the page. O Bc is neither out of nor into the page and Bc + 0. O Bc = 0. Figure 1 of 2 Part D What is the direction of the magnetic field Bp at Point D? A O Bp is out of the page. O Bp is into the page. O Bp is neither out of nor into the page and BD # 0. O BD = 0For this diagram, if each wire has current of 15A, how do we calculate the magnetic cforce imposed onto the top wire? How do we calculate the magnetic field in the center of the triangle? It would be great if someone could include the RHR stuff as well, with drawing direction of magnetic field for each point.
- Please do solve accurateDetermine the direction of the vector v, B, or F that is missing from the pair of vectors shown in each scenario. Here, v is the velocity vector of a moving positive charge, B is a constant and uniform magnetic field, and F is the resulting force on the moving charge. 1. 4. OB THE F 2. 5. teo B 7 F Answer Bank 3. 6. 7 FDetermine the direction of the vector v, B , or F that is missing from the pair of vectors shown in each scenario. Here, v is the velocity vector of a moving positive charge, B is a constant and uniform magnetic field, and F is the resulting force on the moving charge. 1. 3. B 5. 6. Answer Bank 2. 4.
- A long pair of insulated wires serves to conduct 23.0 A of dc current to and from an instrument. If the wires are of negligible diameter but are 2.8 mm apart, what is the magnetic field 10.0 cm from their midpoint, in their plane (Figure 1)? Express your answer using two significant figures. Compare to the magnetic field of the Earth of 5.0×10−5T. Express your answer using two significant figures.Please asapThe force experienced by a test charge q at a point in a region of electric and magnetic fields are given as follows: F1 = 0 for v = Voax F2 = 0 for v = Voay F3 = -[f3]qEoaz for v = vola, + 2a,) Where vọ and Eo are constants. What is the expression for B at that point. O Egaz O (Eo / volaz O Edlax - a,) O (Eo / vol(ax - a,)