Wire 2 is removed and a uniform electric field is created in the region around wire 1. A positively charged particle now moves past the wire with oomstant speed foward the top of the page, along the line connecting points Pand Q. as shown. (c) What is the direction of the electric field? Rustify your answer.
Wire 2 is removed and a uniform electric field is created in the region around wire 1. A positively charged particle now moves past the wire with oomstant speed foward the top of the page, along the line connecting points Pand Q. as shown. (c) What is the direction of the electric field? Rustify your answer.
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1
![Wire 1
P
I
+)
Wire 2 is removed and a uniform electric field is created in the region around wire 1. A positively charged particle
now moves past the wire with constant speed toward the top of the page, along the line connecting points Pand
Q. as shown.
(c) What is the direction of the electric field? Rustify your answer.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1fbd2139-b25b-4139-b4d5-f1bd8e30933a%2F73b99662-425c-43d6-9c74-d7608e0b62c3%2Fa9kktro_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Wire 1
P
I
+)
Wire 2 is removed and a uniform electric field is created in the region around wire 1. A positively charged particle
now moves past the wire with constant speed toward the top of the page, along the line connecting points Pand
Q. as shown.
(c) What is the direction of the electric field? Rustify your answer.
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Is it always true that magnetic force and electric field are in the same direction? Also, why is -vB opposite to magnetic force?
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