Electric Magnetism Worksheet 1 Student Name: Group Members: 1. For the two current carrying wires shown below, indicate the direction of the magnetic field caused by the wire at the 7 marked locations. • 5 3 1. • 7 2 Point 6 is in front of the wire 2. What is the magnitude of the magnetic field at the location of the black dot on the far right side of the picture below? Give proof for your answer! Identical wires d
Electric Magnetism Worksheet 1 Student Name: Group Members: 1. For the two current carrying wires shown below, indicate the direction of the magnetic field caused by the wire at the 7 marked locations. • 5 3 1. • 7 2 Point 6 is in front of the wire 2. What is the magnitude of the magnetic field at the location of the black dot on the far right side of the picture below? Give proof for your answer! Identical wires d
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Student Name:
Group Members:
1. For the two current carrying wires shown below, indicate the direction of the magnetic field
caused by the wire at the 7 marked locations.
• 5
• 3
1 .
• 7
Point 6 is in
front of the
wire
2. What is the magnitude of the magnetic field at the location of the black dot on the far right
side of the picture below? Give proof for your answer!
Identical
wires
d
CS Scanned with CamScanner"
Transcribed Image Text:Electric Magnetism Worksheet 1
Student Name:
Group Members:
1. For the two current carrying wires shown below, indicate the direction of the magnetic field
caused by the wire at the 7 marked locations.
• 5
• 3
1 .
• 7
Point 6 is in
front of the
wire
2. What is the magnitude of the magnetic field at the location of the black dot on the far right
side of the picture below? Give proof for your answer!
Identical
wires
d
CS Scanned with CamScanner

Transcribed Image Text:Electric Magnetism Worksheet 1
3. The image below shows a current-carrying coil of conductive wire. You are viewing the wire
in cross-section, and the blue curves are magnetic field lines caused by the coil. What are
the directions of the current in the top-most and bottom-most cross-sections of the coil?
How do you know?
4. A solenoid used to produce magnetic fields for research purposes is 2.0m long, with an
inner radius of 30cm and 1000 turns of wire. When running, the solenoid produces a field
of 1.0 T in the center. Given this, how large a current does it carry?
00000000
oo000000000
0000000®0000
10000000000
Length L
CS Scanned with CamScanner
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