please show work Question 4 3.6 pts A loop of wire carrying a current of 5.0...
A loop of wire carrying a current of 2.0 A is in the shape of a right triangle with two equal sides, each 15 cm long. A 0.7 T uniform magnetic field is in the plane of the triangle and is perpendicular to the hypotenuse. What is the resultant magnetic force on the current loop?
A single-turn current loop, carrying a current of 5.80 A, is in the shape of a right triangle with sides 69.3, 114, and 133 cm. The loop is in a uniform magnetic field of magnitude 73.2 mT whose direction is parallel to the current in the 133 cm side of the loop. What is the magnitude of the magnetic force on (a) the 133 cm side, (b) the 69.3 cm side, and (c) the 114 cm side? (d) What is...
A single-turn current loop, carrying a current of 5.58 A, is in the shape of a right triangle with sides 65.3, 137, and 152 cm. The loop is in a uniform magnetic field of magnitude 79.2 mT whose direction is parallel to the current in the 152 cm side of the loop. What is the magnitude of the magnetic force on (a) the 152 cm side, (b) the 65.3 cm side, and (c) the 137 cm side? (d) What is...
A single-turn current loop, carrying a current of 3.92 A, is in the shape of a right triangle with sides 66.6, 165, and 178 cm. The loop is in a uniform magnetic field of magnitude 73.4 mT whose direction is parallel to the current in the 178 cm side of the loop. What is the magnitude of the magnetic force on (a) the 178 cm side, (b) the 66.6 cm side, and (c) the 165 cm side? (d) What is...
A single-turn current loop, carrying a current of 5.92 A, is in the shape of a right triangle with sides 62.6, 129, and 143 cm. The loop is in a uniform magnetic field of magnitude 68.3 mT whose direction is parallel to the current in the 143 cm side of the loop. What is the magnitude of the magnetic force on (a) the 143 cm side, (b) the 62.6 cm side, and (c) the 129 cm side? (d) What is...
The current in the triangular wire loop is I = 5.0 A, as shown in the figure. The loop is in a flat magnetic field B = (3.0T) (a) Calculate the magnetic moment of the current loop and, with it, calculate the torque affecting on the loop In what direction does this torque tend to turn the loop? (b) Calculate the magnetic forces affecting on the sides of the triangle and, with their help, calculate the magnetic torque. (Can you...
The plane of a rectangular loop of wire with a width of 5.0 cm and a height of 8.0 cm is parallel to a magnetic field of magnitude 0.25 T . The loop carries a current of 6.7 A . What torque acts on the loop? Express your answer using two significant figures. τ = What is the magnetic moment of the loop? Express your answer using two significant figures. μ = A⋅m^2 What is the maximum torque that can...
A current carrying wire is in the shape of an equilateral triangle of edge length 4.0 cm. The triangle lies in the z = 0 plane. The wire carries a current of 1.6 A. (a) What is the magnitude of the torque on the wire if it is in a region with a uniform magnetic field of magnitude 0.34 T that points in the +z direction? ...................N·m (b) What is the magnitude of the torque on the wire if it...
A 1.69 m long wire carrying a current of 1.02 A forms a 5-turn loop in the shape of an equilateral triangle. If the loop is placed in a constant uniform magnetic field with a maanitude of 0.481 T, determine the maximum torque that acts on it.
A wire carrying a current of 2.51 A is bent into the shape of a square loop of side length 5.62 cm and is placed in the xy-plane. What is the torque on the wire loop if there is a uniform magnetic field of 0.133 T pointing in the +z direction? What is the torque on the wire loop if the magnetic field instead points in the +x direction?