Q.) Given the magnetic vector potential: A = y'z a, - (x+ 1)z a, A/m Find(a) the magnetic flux density; (b)the magnetic flux through a square loop described by 05 x<1, 0sys1, z= 2.
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A: Force on the conductor = Idl ×B . Where B is magnetic flux density and I is current in conductor.
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Q: In a cartesian system, vector magnetic potential at a point (x.y,z ) is defined as A = 4x2yax…
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Q: In a cartesian system, vector magnetic poteili is defined as A = 4x?yax +2y²xay -3xyzaz The total…
A: The magnetic flux can be calculated by using the surface integral of the A.
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Q: In a cartesian system, vector magnetic potential at a point (x,y,z ) is defined as A = 4x2yax…
A: The magnetic flux can be calculated by using the surface integral of the A.
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- Q39. In a cartesian system, vector magnetic potential at a point (x.z) is defined as A = 4x ya, + 2y xa, - 3xyza, wb/m The magnetic flux density at poınt (0, 1, 0) will be -4az 2az -3ax+3ay-2az -2az Q40. For Q39 The total magnetic flux through the surface z=4,0 Sx s 1, -1 sy s4 will be 112/3 40 130/3 None of these ip 口□In a cartesian system, vector magnetic potential at a point (x.y,z ) is defined as A = 4x2yax +2y²xay-3xyzaz The total magnetic flux through the surface z = 4, 0A wire with length 1m moved with * velocity 0.5 m/s made angle 45 degree with x-axis, it is moved in a uniform magnetic field 0.2T along y-axis, what is * ?the motional emf in this wire а. Ov O b. 0.0707 v O c. 0.1 v OD 2) Suppose: ?a Find the flux through the surface of a cylinder with O a and by evaluating the left side and the right side of the divergence theorem. Use oD dS DdV divergence theorem V With the help of these values formulate equations of electrostatic field environment equations. as jop = pdp do a, %3D a dSade = pdp dz a, %3D side dS bottom =-pap do a,In the figure below, a = 2 cm, b = 4 cm, and I = 2 A. Take the unit vector for the x-axis to right of page, the one for the y-axis to the top of page, and that for the z-axis out of page. (a) Give the directions of the different magnetic fields created by each part of the distribution of the current loop at point P. (b) What is the net magnetic field at point P, magnitude and direction? Show your detailed work. P. 90°Given the vector magnetic potential A=10 sinθ aθ, find the magnetic flux density B in the sphericalcoordinates at (2, π/2, 0)ElectromagneticsQuestion 5 In a cartesian system, vector magnetic potential at a point (x.y.z) is defined as A = 4x2yax +2y2xay -3xyzaz The total magnetic flux through the surface z = 4, 017 t of estion For an electromotive force, Vemf, to be induced in a vertical loop from a magnetic field generated by an infinite length line of current I flowing in the az direction, the loop must be moving in Select one: O a. az Ob. ax or ay Oc. ay O d. axquestion will save this response. Quèstion 29 In a cartesian system, vector magnetic potential at a point (x,y,z) is defined as A = = 4x?yax +2y?xay -3xyza, The total magnetic flux through the surface z= 4,0A coaxial cable is carrying a uniformly distributed current of 1 A in the inner conductor and -1 A in the outer conductor. The radius of the inner conductor is 6 cm and the radius of the outer conductor is 12 cm. The magnetic field intensity at the circular path of radius 7 cm is: Select one: a. 2.65 A/m O b. 1.76 A/m O c. 1.98 A/m O d. 2.27 A/m e. None of the above(a) A 400 mm length of conductor carrying a current of 25 A is situated at right-angles to a magnetic field between two poles of an electric motor. The poles have a circular cross-section. If the force exerted on the conductor is 80 N and the total flux between the pole faces is 1.27 mWb, determine the diameter of a pole face.SEE MORE QUESTIONSRecommended textbooks for youIntroductory Circuit Analysis (13th Edition)Electrical EngineeringISBN:9780133923605Author:Robert L. BoylestadPublisher:PEARSONDelmar's Standard Textbook Of ElectricityElectrical EngineeringISBN:9781337900348Author:Stephen L. HermanPublisher:Cengage LearningProgrammable Logic ControllersElectrical EngineeringISBN:9780073373843Author:Frank D. PetruzellaPublisher:McGraw-Hill EducationFundamentals of Electric CircuitsElectrical EngineeringISBN:9780078028229Author:Charles K Alexander, Matthew SadikuPublisher:McGraw-Hill EducationElectric Circuits. (11th Edition)Electrical EngineeringISBN:9780134746968Author:James W. Nilsson, Susan RiedelPublisher:PEARSONEngineering ElectromagneticsElectrical EngineeringISBN:9780078028151Author:Hayt, William H. (william Hart), Jr, BUCK, John A.Publisher:Mcgraw-hill Education,Introductory Circuit Analysis (13th Edition)Electrical EngineeringISBN:9780133923605Author:Robert L. BoylestadPublisher:PEARSONDelmar's Standard Textbook Of ElectricityElectrical EngineeringISBN:9781337900348Author:Stephen L. HermanPublisher:Cengage LearningProgrammable Logic ControllersElectrical EngineeringISBN:9780073373843Author:Frank D. PetruzellaPublisher:McGraw-Hill EducationFundamentals of Electric CircuitsElectrical EngineeringISBN:9780078028229Author:Charles K Alexander, Matthew SadikuPublisher:McGraw-Hill EducationElectric Circuits. (11th Edition)Electrical EngineeringISBN:9780134746968Author:James W. Nilsson, Susan RiedelPublisher:PEARSONEngineering ElectromagneticsElectrical EngineeringISBN:9780078028151Author:Hayt, William H. (william Hart), Jr, BUCK, John A.Publisher:Mcgraw-hill Education,