5) Given the magnetic vector potential A = p2/8 az Wb/m, calculate the total magnetic flux crossing the surface p=7/2, 1 < p< 3m,0
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- Consider the situation shown in the figure below. An electric field of 300 V/m is confined to a circular area d = 10.3 cm in diameter and directed outward perpendicular to the plane of the figure. Consider that the field is increasing at a rate of 19.6 V/m .S. Eout P (a) What is the direction of the magnetic field at the point P, r upwards downwards = 15.1 cm from the center of the circle? (b) What is the magnitude of the magnetic field at the point P, r T = 15.1 cm from the center of the circle?5) Given the magnetic vector potential A = p?14 az Wb/m, calculate the total magnetic flux dp dz as crossing the surface @=7/4, 1 < p < 2 m , 01. The figure shows a fixed conducting wire, bent to form a square frame of side b, lying in the xy-plane. Throughout the region of the figure, there is a spatially non-uniform, time-dependent magnetic field given by B = kx² cos(wt) 2 where k and w are constants. Neglecting any effects due to the frame's self- inductance, find the magnitude of the current in the frame as a function of time. The frame's resistance is R. b b xA flat, circle surface area with a radius of 4m is in the YZ-plane at x=0, Find the magnitude of the magnetic flux through this surface produced by a magnetic flux density of B=3.5ax-6.4ay+8az TQuestion 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, 0A square surface area with side length of 4cm is in the XY plane at z=0, Find the magnitude of the magnetic flux due to a uniform magnetic field of B=2ax-6ay+5az T a. In the +z direction b. 60 degrees from the +z direction c. Perpendicular to the +z direction d. 180 degrees from the +z directionPlz solve within 30min I vill give definitely upvote and vill give positive feedback thank you sirGiven the magnetic field vector potential: A= 2r cose ar - 3r sine a0 (A/m), find at point P (1,3,7): (1)magnetic flux density(B),(2)magnetic field intensity (H), (3) current density (J).Q3) ) Find the current density at point (1,2,1) if the magnetic vector potentoil A is: A=2yz ax – 3xay +2xaz W/mRecommended 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,