Two Straight Wires are lying on this page with a separation of 0.800 meters between them. Wire #1 has a conventional current of 3.5 A heading upwards [Ic₁₁ ↑]. Wire #2 has a conventional current of 5.5 A heading downwards [Ic.2 ↓]. The Red dot is Note: The 0.200 meters to the left of wire #1. diagram is NOT DRAWN TO SCALE. a) 3.51 [B Calculate the magnitude and direction of the Magnetic Field [B at the Red dot due to Wire #1. Red dot, net a) 4.61 b) 3.51 O c) 35.1 O b) 4.61 0.200 m Calculate the magnitude and direction of the NET Magnetic Field {pT}] at Red dot due to Wires #1 and #2. c) 2.41 O Wire #1 d) 35.1 BA.1 BA.2 d) 2.41 0.800 m Bc.1 Wire #2 Bc.2 BB,1 BB.2 Red dot, Wite #1 {µT}]
Two Straight Wires are lying on this page with a separation of 0.800 meters between them. Wire #1 has a conventional current of 3.5 A heading upwards [Ic₁₁ ↑]. Wire #2 has a conventional current of 5.5 A heading downwards [Ic.2 ↓]. The Red dot is Note: The 0.200 meters to the left of wire #1. diagram is NOT DRAWN TO SCALE. a) 3.51 [B Calculate the magnitude and direction of the Magnetic Field [B at the Red dot due to Wire #1. Red dot, net a) 4.61 b) 3.51 O c) 35.1 O b) 4.61 0.200 m Calculate the magnitude and direction of the NET Magnetic Field {pT}] at Red dot due to Wires #1 and #2. c) 2.41 O Wire #1 d) 35.1 BA.1 BA.2 d) 2.41 0.800 m Bc.1 Wire #2 Bc.2 BB,1 BB.2 Red dot, Wite #1 {µT}]
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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16
![Two Straight Wires are lying on this
page with a separation of 0.800 meters between them.
Wire #1 has a conventional current of 3.5 A heading
upwards [Ic₁1 ↑1. Wire #2 has a conventional current.
of 5.5 A heading downwards [2]. The Red dot is
0.200 meters to the left of wire #1. Note: The
diagram is NOT DRAWN TO SCALE.
a) 3.51 O
[B
Calculate the magnitude and direction of the Magnetic Field [B
at the Red dot due to Wire #1.
Red dot, net
a) 4.61
b) 3.51
O
c) 35.1 O
b) 4.61
Wire #1
0.200 m
Calculate the magnitude and direction of the NET Magnetic Field
{pT}] at Red dot due to Wires #1 and #2.
c) 2.41 O
BA,1
BA,2
d) 35.1 8
d) 2.41 8
0.800 m
Bc,1
Wire #2
Bc,2
Red dot, Wite #1'
BB,1
BB,2
{pT}]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa8713e9b-73ac-4e4f-a322-df330d573c40%2F9e5478d6-f927-44e3-9bc3-276627225eb4%2Furf37e_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Two Straight Wires are lying on this
page with a separation of 0.800 meters between them.
Wire #1 has a conventional current of 3.5 A heading
upwards [Ic₁1 ↑1. Wire #2 has a conventional current.
of 5.5 A heading downwards [2]. The Red dot is
0.200 meters to the left of wire #1. Note: The
diagram is NOT DRAWN TO SCALE.
a) 3.51 O
[B
Calculate the magnitude and direction of the Magnetic Field [B
at the Red dot due to Wire #1.
Red dot, net
a) 4.61
b) 3.51
O
c) 35.1 O
b) 4.61
Wire #1
0.200 m
Calculate the magnitude and direction of the NET Magnetic Field
{pT}] at Red dot due to Wires #1 and #2.
c) 2.41 O
BA,1
BA,2
d) 35.1 8
d) 2.41 8
0.800 m
Bc,1
Wire #2
Bc,2
Red dot, Wite #1'
BB,1
BB,2
{pT}]
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