16. Two parallel, infinitely long wires, separated by a distance d=lm, carry parallel currents I,=1A and I,-2 A, as shown in the right Figure. (a) Find the magnetic field at middle point M between the two wires. (b) Find the magnetic field at point P with distance r=0.5 m from the wire carrying current I,. Ho = 4T×10T m/A %3D I,=1A 1-2A --P F0.5m d=1m

University Physics Volume 2
18th Edition
ISBN:9781938168161
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Chapter11: Magnetic Forces And Fields
Section: Chapter Questions
Problem 81AP: A 5.0-m section of a long, straight wire carries a current of 10 A while in a uniform magnetic field...
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16. Two parallel, infinitely long
wires, separated by a distance
d=1m, carry parallel currents I,=1A
and I,=2 A, as shown in the right
Figure. (a) Find the magnetic field
at middle point M between the two
wires. (b) Find the magnetic field at
point P with distance r=0.5 m from
the wire carrying current I,.
H, = 4nx10T ·m/A
%3D
1,=1A
1-2A
---P
F0.5m
d=1m
Transcribed Image Text:16. Two parallel, infinitely long wires, separated by a distance d=1m, carry parallel currents I,=1A and I,=2 A, as shown in the right Figure. (a) Find the magnetic field at middle point M between the two wires. (b) Find the magnetic field at point P with distance r=0.5 m from the wire carrying current I,. H, = 4nx10T ·m/A %3D 1,=1A 1-2A ---P F0.5m d=1m
15. It is occasionally useful to
connect capacitors in parallel
or series to secure larger or
smaller capacitance. There are
capacitors
capacitance of C-3 µF and
C2-5 µF, but capacitors with
other capacitance are needed.
Please draw the collection in
many
with
indicate
which
figures
capacitors (C, or C2) and what
physics formula you used
clearly. (a) 8 µF; (b)2.5µF.
Transcribed Image Text:15. It is occasionally useful to connect capacitors in parallel or series to secure larger or smaller capacitance. There are capacitors capacitance of C-3 µF and C2-5 µF, but capacitors with other capacitance are needed. Please draw the collection in many with indicate which figures capacitors (C, or C2) and what physics formula you used clearly. (a) 8 µF; (b)2.5µF.
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