Question 3: Magnetic Force on Currents What is the direction of the magnetic force on the current in each of the six cases? X x x X (a) x x x x (c) x S X (e) x Bin x x ● x B Bout ê (d) • lout
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- The force on a particle due to a magnetic field is proportional to the charge of the particle and to its speed. In addition, the force has its maximum value when the velocity of the particle is at right angles to the magnetic field, and is zero when the velocity and magnetic field are parallel to one another. True FalseA negative charge is traveling left through a magnetic field oriented into the screen.What is the direction of the magnetic force on the negative charge? Nagretie he X X X X> K X X X X X X X X X> K X X X X X X XX X) ( X X X X X X X X X ) (X X X X X X X X X > KX X X X X X X X X> K X X X X X X X X X ) no force up down into the screen out of the page Submit Request Answerwest north east ▾ south A straight, 1.8 m wire carries a current of 2.4 A in the into-the-page direction. If the current is in a uniform magnetic field of 0.70 x 10-4 T from east to west, what would be the magnitude and direction of the magnetic force on the current carrying wire? zero 3.02 x 10-4 N, from south to north 3.02 x 10-4 N, from north to south 3.02 x 10-4 N, from east to west 3.02 x 10-4 N, from west to east 3.02 x 10-4 N, out of the page 3.02 x 10-4 N, into the page O 1.87 x 10-4 N, from south to north O 1.87 x 10-4 N, from north to south 1.87 x 10-4 N, from east to west 1.87 x 10-4 N, from west to east 1.87 x 10-4 N, out of the page O 1.87 x 10-4 N, into the page
- Two long parallel wires carry currents of 2.15 A and 7.55 A. The magnitude of the force per unit length acting on each wire is 6.21 x 10-5 N/m. Find the separation distance d of the wires expressed in millimeters. d = mmThe diagram shows a straight wire carrying a current flowing into the page. The wire is between the poles of a permanent magnet. The direction of the magnetic force :exerted on the wire is N OS To the right .a .b O Into the page .c O Upward Downward .d O Out from the page .e O To the Left .f OAssume that a uniform magnetic field is directed out of this page. If a proton is released with an initial velocity directed from the top edge to the bottom edge of the page, which of the following describes the direction of the resultant force acting on the proton? out of the page to the right to the left into the page
- Two wires carry currents in opposite directions, out of and into page. Current A has a magnitude of 50 Amperes and is located at (0, 0), into page Current B has a magnitude of 30 Ampere and is located at (X meters, 0) out of page. X = 3.5, if zero X = 1 Find magnetic field B vector due to Current A at (0, -5meters) Find magnetic field B vector due to current B at (0, -5meters) Find the total B vector at (0, -5meters)| Scientists in a laboratory onboard a zero-gravity spaceship setup and measure electric and magnetic fields in an experiment chamber. The scientists measure the magnetic field to point in the positive x-direction given by B = B,î. The scientists then measure the net force acting on a charged particle q moving through this chamber. The net force is measured to be F = -F,î + F2j. The particle is moving along the positive z-axis with a velocity given by i = v,k. What are the x and y components of the electric field as measured by the scientists? Express your answers in terms of q, vo, Ba, F1, and F2, as needed.Two long parallel wires carry currents of 3.39 A and 4.13 A. The magnitude of the force per unit length acting on each wire is 5.33 x 10-5 N/m. Find the separation distance d of the wires expressed in millimeters. d = mm