Figure P28.62 shows an end view of two long, parallel wires perpendicular to the xy -plane. each carrying a current I but in opposite directions, (a) Copy the diagram, and draw vectors to show the B → field of each wire and the net B → field at point P . (b) Derive the expression for the magnitude of B at any point on the x -axis in terms of the x -coordinate of the point. What is the direction of B → (c) Graph the magnitude of B → at points on the x -axis. (d) At what value of x is the magnitude of B → a maximum? (e) What is the magnitude of B → when x >> a ? Figure P28.62
Figure P28.62 shows an end view of two long, parallel wires perpendicular to the xy -plane. each carrying a current I but in opposite directions, (a) Copy the diagram, and draw vectors to show the B → field of each wire and the net B → field at point P . (b) Derive the expression for the magnitude of B at any point on the x -axis in terms of the x -coordinate of the point. What is the direction of B → (c) Graph the magnitude of B → at points on the x -axis. (d) At what value of x is the magnitude of B → a maximum? (e) What is the magnitude of B → when x >> a ? Figure P28.62
Figure P28.62 shows an end view of two long, parallel wires perpendicular to the xy-plane. each carrying a current I but in opposite directions, (a) Copy the diagram, and draw vectors to show the
B
→
field of each wire and the net
B
→
field at point P. (b) Derive the expression for the magnitude of B at any point on the x-axis in terms of the x-coordinate of the point. What is the direction of
B
→
(c) Graph the magnitude of
B
→
at points on the x-axis. (d) At what value of x is the magnitude of
B
→
a maximum? (e) What is the magnitude of
B
→
when x >> a?
Car P moves to the west with constant speed v0 along a straight road. Car Q starts from rest at instant 1, and moves to the west with increasing speed. At instant 5, car Q has speed w0 relative to the road (w0 < v0). Instants 1-5 are separated by equal time intervals. At instant 3, cars P and Q are adjacent to one another (i.e., they have the same position). In the reference frame o f the road, at instant 3 i s the speed o f car Q greater than, less than, or equal to the speed of car P? Explain.
Car P moves to the west with constant speed v0 along a straight road. Car Q starts from rest at instant 1, and moves to the west with increasing speed. At instant 5, car Q has speed w0 relative to the road (w0 < v0). Instants 1-5 are separated by equal time intervals.
Car P moves to the west with constant speed v0 along a straight road. Car Q starts from rest at instant 1, and moves to the west with increasing speed. At instant 5, car Q has speed w0 relative to the road (w0 < v0). Instants 1-5 are separated by equal time intervals. Sketch and label a vector diagram illustrating the Galilean transformation of velocities that relates velocity of car P relative to the road, velocity of car Q relative to road, and velocity of car Q relative to car P at instant 3. In the frame of car P, at instant 3 is car Q moving to the west, moving to the east, or at rest? Explain.
Chapter 28 Solutions
University Physics, Volume 2 - Technology Update Custom Edition for Texas A&M - College Station, 2/e
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