Problem 5: An electric current of I= 0.55 A flows through a long, straight wire. The wire lies in the plane of a rectangular area that has a pair of sides parallel to the wire. Refer to the diagram. The distance between the wire and the nearest side of the area is c = 0.043 m and the I area's dimensions are a = 0.038 m and b = 0.089 m, as shown. a Find the magnetic flux, , in T•m², through the area. sin() cos() tan() 7 8 НОМE cotan() asin() acos() 4 5 6. atan() acotan() sinh() * 1 2 3 cosh() tanh() cotanh() +| - END ODegrees O Radians VO BACKSPACE DEL CLEAR

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Chapter1: Units, Trigonometry. And Vectors
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Problem 5: An electric current of I= 0.55 A flows through a long, straight wire. The wire
lies in the plane of a rectangular area that has a pair of sides parallel to the wire. Refer to the
diagram. The distance between the wire and the nearest side of the area is c = 0.043 m and the
I
area's dimensions are a = 0.038 m and b = 0.089 m, as shown.
a
Find the magnetic flux, , in T•m², through the area.
=
sin()
cos()
tan()
8
НОМЕ
cotan()
asin()
acos()
E AL
4
5
6.
atan()
acotan()
sinh)
1 2
3
cosh()
tanh()
cotanh()
+| -
END
ODegrees O Radians
VO BACKSPACE
DEL CLEAR
Transcribed Image Text:Problem 5: An electric current of I= 0.55 A flows through a long, straight wire. The wire lies in the plane of a rectangular area that has a pair of sides parallel to the wire. Refer to the diagram. The distance between the wire and the nearest side of the area is c = 0.043 m and the I area's dimensions are a = 0.038 m and b = 0.089 m, as shown. a Find the magnetic flux, , in T•m², through the area. = sin() cos() tan() 8 НОМЕ cotan() asin() acos() E AL 4 5 6. atan() acotan() sinh) 1 2 3 cosh() tanh() cotanh() +| - END ODegrees O Radians VO BACKSPACE DEL CLEAR
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