F. dr. For example, the in Sc F. dr where =tb (1)'4- ((1)) 16.2 EXERCISES 1-16 Evaluate the line integral, where C is the given curve. 1. fcy ds, C:x=t², y = 2t, 0≤ t ≤ 311 6. fce* dx, 2. f(x/y) ds, C: x= t³, y = t, 1 < t < 2 edi sund link gi ti 3. fcxyds, C is the right half of the circle x² + y² = 16 100 OTTEND 4. cxe' ds, C is the line segment from (2, 0) to (5, 4) 5. f (x²y + sin x) nsdw ovisgon zji yd bussiger ai C is the arc of the parabola y = x² from (0, 0) to (π, 7²) ivx = (sl) C is the arc of the curve x = = y³ from (-1, -1) to (1, 1) ab 2015 7. fc (x + 2y) dx + x² dy, C consists of line segments from (0, 0) to (2, 1) and from (2, 1) to (3, 0) 8. fcx² dx + y² dy, C consists of the arc of the circle x² + y² = 4 from (2, 0) to (0, 2) followed by the line segment from (0, 2) to (4,3)
F. dr. For example, the in Sc F. dr where =tb (1)'4- ((1)) 16.2 EXERCISES 1-16 Evaluate the line integral, where C is the given curve. 1. fcy ds, C:x=t², y = 2t, 0≤ t ≤ 311 6. fce* dx, 2. f(x/y) ds, C: x= t³, y = t, 1 < t < 2 edi sund link gi ti 3. fcxyds, C is the right half of the circle x² + y² = 16 100 OTTEND 4. cxe' ds, C is the line segment from (2, 0) to (5, 4) 5. f (x²y + sin x) nsdw ovisgon zji yd bussiger ai C is the arc of the parabola y = x² from (0, 0) to (π, 7²) ivx = (sl) C is the arc of the curve x = = y³ from (-1, -1) to (1, 1) ab 2015 7. fc (x + 2y) dx + x² dy, C consists of line segments from (0, 0) to (2, 1) and from (2, 1) to (3, 0) 8. fcx² dx + y² dy, C consists of the arc of the circle x² + y² = 4 from (2, 0) to (0, 2) followed by the line segment from (0, 2) to (4,3)
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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16.2
13 please step by step

Transcribed Image Text:Eve
times.
1 a
(1 mis 1/200 S
16.2 EXERCISES
and the
13
1-16 Evaluate the line integral, where C is the given curve.
1. fcyds, C: x = t², y = 2t, 0≤ t ≤ 3
diban
P
fF.dr = P dx + Qdy + R dz
C
C
Din
=
x+x+in
[=(+1xx
For example, the integral Jey dx + z dy + x dz in Example 6 could be expressed a
Sc F. dr where
- ib (1)4- ((1))
C is the line segment from (2, 0) to (5, 4)
6. Sc ex dx,
C is the arc of the curve x = y³ from (-1, -1) to (1, 1)
DA
20
10. fey²z ds,
2. fc (x/y) ds, C: x = t³, y = t², 1 ≤ t ≤2·1=1 dC is the line segment from (3, 1, 2) to (1, 2, 5)
3. fcxy¹ds,
4. cxe' ds,
5. fc (x²y + sin x) dy, dw
gan ali vd boo
C is the arc of the parabola y = x² from (0, 0) to (π, TT²)
= (s)
[x = (32x) oder al
Jedi sun llina, ei si bo
nehenoizo nadw bogaerionu, su
C is the right half of the circle x² + y² = 161. Sexe ³² ds,
the point
C is the line segment from (0, 0, 0) to (1, 2, 3)
12. fc (x² + y² + z²) ds,
C: x=t, y = cos 2t, z =
2t, z = sin 2t, 0≤ t ≤2m
13. fcxye dy, C: x=t, y = t², z = 1²³, 0≤1≤1x
1435 15.0
14. fcy dx + z dy + x dz,
ed
C: x = √t, y=t, z = t², 1 ≤ t ≤ 4
7. S (x + 2y) dx + x² dy, C consists of line segments from
(0, 0) to (2, 1) and from (2, 1) to (3, 0)
8. fcx² dx + y² dy, C consists of the arc of the circle
15
x² + y² 4 from (2,0) to (0, 2) followed by the line segment
from (0, 2) to (4,3)
ately F(x, y, z) = yi+zj+xk
sochen-
S=
holoons
15-(0)7)3
where F = Pi+Qj+ Rk
vas
the particle along Cisapprox
9. fcx²y ds,
C: x = cos t, y = sin t, z = t, 0≤t≤m/2
15. fz² dx + x² dy + y² dz,
C is the line segment from (1, 0, 0) to (4, 1, 2)
16. fc (y + z) dx + (x + 2) dy + (x + y) dz,
C consists of line segments from (0, 0, 0) to (1, 0, 1) and from
(1, 0, 1) to (0, 1, 2)
top
18
1
t
2
f
2
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