3. A loop of wire is bent to have straight and circular arc shaped parts as shown in the figure. A constant current I of 36A flows through the wire in the direction depicted in the figure. If the length R equals 13 cm, determine the magnitude and the direction of the magnetic field produced by the loop of wire at point O by using Biot-Savart's Law (uo-=1.26x10-6 T.m/A) 6R
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- A thin, circular coil with 47 turns that has a radius of 20.7 cm carries a current of 2.65 A. What is the strength ?B of the magnetic field at a point on the coil's axis that is 48.9 cm from the center of the coil? B=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.What is the magnitude of the force per meter of length on a straight wire carrying an 9.10-A current when perpendicular to a 0.70-T uniform magnetic field? Express your answer to two significant figures and include the appropriate units. ? Value Units %3D Submit Request Answer Part B What if the angle between the wire and field is 41.0 °? Express your answer to two significant figures and include the appropriate units. ? F 1. Value Units Submit Request Answer P Type here to search 100% Lenovo
- Hey I am doing some physics homework and am stumped on this question. Any help will be great! Thanks!5. Four wires each carry 5.0A of current. If the distance between the wires lis 0.2m meters, find the magnetic field (magnitude and direction) at point P. A x с B(x l DA loop of wire is bent to have straight and circular arc shaped parts as shown in the figure. A constantcurrent I of 36A flows through the wire in the direction depicted in the figure. If the length R equals13 cm, determine the magnitude and the direction of the magnetic field produced by the loop of wireat point O by using Biot-Savart’s Law (µ0=≈1.26x10-6 T.m/A)
- 6.7. A-coil has a length of 30cm, a radius of 1.2 cm, and 300 turns carry a current of 2.6mA. Find the magnitude of the magnetic field on the axis of the coil at the centre of it. (μ0=4π×10−7 T.m/A)5. The figure shows a cross-section of a coaxial cable. The gray regions are rubber conductors. The current I2 is going into the page and I1 is going out. Determine the net magnetic fields at point a and b including direction. (See problem 31, chapter 29 in Physics for Scientists and Engineers)
- A coaxial cable is carrying a uniformly distributed current of 100 A in the inner conductor and -100 A in the outer conductor. The radius of the inner conductor is 8 cm and the radius of the outer conductor is 16 cm. The magnetic field intensity at the circular path of radius 9 cm is: Select one: a. None of the above b. 2.27 A/m c. 1.98 A/m d. 2.65 A/m e. 1.76 A/mwrong before94&cmid39729&page=D9 فيز n 10 A straight wire of length 49.2 cm carries a current of 50 A and makes an angle of 60° with a uniform magnetic field. If the force on the wire is 1.3 N what is the magnitude of B ( in units of mT)? ed d out of Select one: g question O A. 81.35 O B. 40.70 OC. 101.67 O D. 61.02 O E. 52.85 evious page Next page