College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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- While on a hike in the North Cascades National Park in the state of Washington, where the magnetic field declination is 17.0 degrees, you want to reach a campsite which is 30.0 km due north of your current position. You look at your compass, and walk 30.0 km in the direction the compass points but after walking the full distance, the campsite is nowhere in view. How far south are you from the campsite? i kmarrow_forwardChapter 29, Problem 043 The figure shows a cross section across a long cylindrical conductor of radius a = 2.05 cm carrying uniform current 32.6 A. What is the magnitude of the current's magnetic field at radial distance (a) 0, (b) 1.19 cm, (c) 2.05 cm (wire's surface), (d)3.86 cm? aarrow_forwardsame direction. If R1-12 cm and R2=5 cm, I,=10A and I2=20A, what is the magnetic field (in 106 T) at point P? The two long, parallel wires shown in the accompanying figure carry currents in the R2 Rs 1. 12 P.arrow_forward
- Each of the two "infinite" parallel wires (perpendicular to the plane of the page) carries a current of I=1.65 A. The direction each current is shown with a dot or a cross; a=0.168 m.Find the magnitude of the magnetic field at a point A: BA= T.This field is directed to? Find the magnitude of the magnetic field at a point B: BB= T.This field is directed to?arrow_forwardThe magnitude of the magnetic flux through the surface of a circular plate is 2.50 10-5 T. m2 when it is placed in a region of uniform magnetic field that is oriented at 46.0° to the vertical. The radius of the plate is 8.50 cm. Determine the strength of the magnetic field. mT?arrow_forwardi have a question with number 22arrow_forward
- A straight wire carries a 10.0 A current (Figure 1). ABCD is a rectangle with point D in the middle of a 1.10 mm segment of the wire and point C in the wire. Figure 1.10-mm A 14.0 cm B segment D 10.0 A 1 of 1 5.00 cm Find the magnitude of the magnetic field due to this segment at the point A. Express your answer with the appropriate units. Submit |dBA| = Value Part B Part C |dBB| = Submit O Part D ΜΑ Part E Find the magnitude of the magnetic field due to this segment at the point B. Express your answer with the appropriate units. Request Answer μA Value Units Request Answer ? Units ? Find the magnitude of the magnetic field due to this segment at the point C. Express your answer with the appropriate units.arrow_forwardThe segment of wire in the figure carries a current of I=8.00 A, where the radius of the circular are is R=4.00 cm. Determine the magnitude and direction of the magnetic field at the origin. Give your answer in µT. (take n=3, and thus Ho = 12×10-7 H/m) ´R 90°arrow_forwardmy question is in the image. I just do not understand this problem. I know that the answer is 94.94 m/s2 but I dont know how I go about getting the answer. How do I solve this problem?arrow_forward
- In the figure, point P2 is at perpendicular distance R = 25.1 cm from one end of straight wire of length L= 14.1 cm carrying current i = 0.727 A. (Note that the wire is not long.) What is the magnitude of the magnetic field at P2? Pe R R Number Unitsarrow_forwardb=2.00cm and I=10A What is the net magnitude of the magnetic field at point P due to both current carrying conductors? Magnitude of magnetic field at point p due to leftward current = 50uT. Answer in units uTarrow_forwardAs shown in the figure below, two long parallel wires (1 and 2) carry currents of I1 = 3.00 A and I2 = 5.10 A in the direction indicated. (a) Determine the magnitude and direction of the magnetic field at a point midway between the wires (d = 10.0 cm). and (b) Determine the magnitude and direction of the magnetic field at point P, located d = 10.0 cm above wire 1.arrow_forward
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