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For the following exercises, use a computer algebra system (CAS) to evaluate the line integrals over the indicated path.
[T]
from (0, 1, 0) to (1, 0, 0)
[T] Evaluate where C is the right half of circle and is traversed in the clockwise direction.
[T] Evaluate where C is the line segment from to (1, 2).
For the following exercises, find the work done.
Find the work done by vector field on a particle moving along a line segment that goes from to
Find the work done by a person weighing 150 lb walking exactly one revolution up a circular, spiral staircase of radius 3 ft if the person rises 10 ft.
Find the work done by force field on a particle as it moves along the helix from point to point
Find the work done by vector field in moving an object along path C , which joins points (1, 0) and (0, 1).
Find the work done by force in moving an object along curve where
Find the mass of a wire in the shape of a circle of radius 2 centered at (3, 4) with linear mass density
For the following exercises, evaluate the line integrals.
Evaluate where is the helix
Let C be the line segment from point (0, 1, 1) to point (2, 2, 3). Evaluate line integral
[T] Use a computer algebra system to evaluate the line integral where C is the arc of the parabola from (−5, −3) to (0, 2).
[T] Use a computer algebra system to evaluate the line integral over the path C given by where
[T] Use a CAS to evaluate line integral over path C given by where
Evaluate line integral where C lies along the x -axis from
[T] Use a CAS to evaluate where C is
In the following exercises, find the work done by force field F on an object moving along the indicated path.
C : counterclockwise around the triangle with vertices (0, 0), (1, 0), and (1, 1)
Let F be vector field Compute the work of integral where C is the path
Evaluate where and C is the segment of the unit circle going counterclockwise from to (0, 1).
Force acts on a particle that travels from the origin to point (1, 2, 3). Calculate the work done if the particle travels:
a. b. c. Yes
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