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Precalculus (10th Edition)
10th Edition
ISBN: 9780321979070
Author: Michael Sullivan
Publisher: PEARSON
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Textbook Question
Chapter B.1, Problem 4E
In Problems
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Question 2
Let F be a solenoidal vector field, suppose V × F = (-8xy + 12z², −9x² + 4y² + 9z², 6y²), and let
(P,Q,R) = V²F(.725, —.283, 1.73). Then the value of sin(2P) + sin(3Q) + sin(4R) is
-2.024
1.391
0.186
-0.994
-2.053
-0.647
-0.588
-1.851
1 pts
1 pts
Let F and G be vector fields such that ▼ × F(0, 0, 0) = (0.76, -9.78, 3.29), G(0, 0, 0) = (−3.99, 6.15, 2.94), and
G is irrotational. Then sin(5V (F × G)) at (0, 0, 0) is
Question 1
-0.246
0.072
-0.934
0.478
-0.914
-0.855
0.710
0.262
.
answer
Chapter B Solutions
Precalculus (10th Edition)
Ch. B.1 - In Problems determine the coordinates of the...Ch. B.1 - In Problems determine the coordinates of the...Ch. B.1 - In Problems determine the coordinates of the...Ch. B.1 - In Problems determine the coordinates of the...Ch. B.1 - In Problems 510, determine the viewing window...Ch. B.1 - In Problems 510, determine the viewing window...Ch. B.1 - In Problems 510, determine the viewing window...Ch. B.1 - In Problems 510, determine the viewing window...Ch. B.1 - In Problems determine the viewing window...Ch. B.1 - In Problems 1116, select a setting so that each of...
Ch. B.1 - In Problems select a setting so that each of the...Ch. B.1 - In Problems select a setting so that each of the...Ch. B.1 - In Problems select a setting so that each of the...Ch. B.1 - In Problems 1116, select a setting so that each of...Ch. B.1 - In Problems 1116, select a setting so that each of...Ch. B.1 - In Problems select a setting so that each of the...Ch. B.2 - In Problems 116, graph each equation using the...Ch. B.2 - In Problems graph each equation using the...Ch. B.2 - In Problems 116, graph each equation using the...Ch. B.2 - In Problems 116, graph each equation using the...Ch. B.2 - In Problems graph each equation using the...Ch. B.2 - In Problems graph each equation using the...Ch. B.2 - In Problems 116, graph each equation using the...Ch. B.2 - In Problems 116, graph each equation using the...Ch. B.2 - In Problems graph each equation using the...Ch. B.2 - In Problems 116, graph each equation using the...Ch. B.2 - In Problems graph each equation using the...Ch. B.2 - In Problems graph each equation using the...Ch. B.2 - In Problems 116, graph each equation using the...Ch. B.2 - In Problems 116, graph each equation using the...Ch. B.2 - In Problems graph each equation using the...Ch. B.2 - In Problems 116, graph each equation using the...Ch. B.2 - 1732. For each of the above equations, create a...Ch. B.2 - For each of the above equations, create a table,...Ch. B.2 - For each of the above equations, create a table,...Ch. B.2 - For each of the above equations, create a table,...Ch. B.2 - 1732. For each of the above equations, create a...Ch. B.2 - 1732. For each of the above equations, create a...Ch. B.2 - 1732. For each of the above equations, create a...Ch. B.2 - For each of the above equations, create a table,...Ch. B.2 - 1732. For each of the above equations, create a...Ch. B.2 - For each of the above equations, create a table,...Ch. B.2 - For each of the above equations, create a table,...Ch. B.2 - 1732. For each of the above equations, create a...Ch. B.2 - For each of the above equations, create a table,...Ch. B.2 - 1732. For each of the above equations, create a...Ch. B.2 - 1732. For each of the above equations, create a...Ch. B.2 - For each of the above equations, create a table,...Ch. B.3 - In Problems use Zero (or ROOT) to approximate the...Ch. B.3 - In Problems 16, use Zero (or ROOT) to approximate...Ch. B.3 - In Problems 16, use Zero (or ROOT) to approximate...Ch. B.3 - In Problems 16, use Zero (or ROOT) to approximate...Ch. B.3 - In Problems use Zero (or ROOT) to approximate the...Ch. B.3 - In Problems use Zero (or ROOT) to approximate the...Ch. B.3 - In Problems 712, use Zero (or ROOT) to approximate...Ch. B.3 - In Problems use Zero (or ROOT) to approximate the...Ch. B.3 - In Problems 712, use Zero (or ROOT) to approximate...Ch. B.3 - In Problems use Zero (or ROOT) to approximate the...Ch. B.3 - In Problems use Zero (or ROOT) to approximate the...Ch. B.3 - In Problems 712, use Zero (or ROOT) to approximate...Ch. B.5 - Prob. 1ECh. B.5 - Prob. 2ECh. B.5 - Prob. 3ECh. B.5 - Prob. 4ECh. B.5 - Prob. 5ECh. B.5 - Prob. 6ECh. B.5 - Prob. 7ECh. B.5 - Prob. 8ECh. B.5 - If Xmin=4,Xmax=12, and Xscl=1, how should...Ch. B.5 - If and how should and be selected so that the...
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- 1. Given the vector field F(x, y, z) = -zi, verify the relation 1 VF(0,0,0) lim +0+ volume inside S ff F• Nds S. where S, is the surface enclosing a cube centred at the origin and having edges of length 2€. Then, determine if the origin is sink or source.arrow_forwardLet a = (-4, 5, 4) and 6 = (1,0, -1). Find the angle between the vector 1) The exact angle is cos 2) The approximation in radians isarrow_forwardFind the (exact) direction cosines and (rounded to 1 decimal place) direction angles of = (3,7,6)arrow_forward
- Let a = (-1, -2, -3) and 6 = (-4, 0, 1). Find the component of b onto a.arrow_forwardForces of 9 pounds and 15 pounds act on each other with an angle of 72°. The magnitude of the resultant force The resultant force has an angle of pounds. * with the 9 pound force. The resultant force has an angle of with the 15 pound force. It is best to calculate each angle separately and check by seeing if they add to 72°.arrow_forward= Let (6,2,-5) and = (5,4, -6). Compute the following: บี.บี. บี. นี = 2 −4(u. v) = (-4). v= ū. (-40) (ū. v) v =arrow_forward
- 17. [-/1 Points] DETAILS MY NOTES SESSCALCET2 6.2.050. Evaluate the integral. (Remember to use absolute values where appropriate. Use C for the constant of integration.) du 4√3- -4² Need Help? Read It SUBMIT ANSWER 18. [-/1 Points] DETAILS MY NOTES SESSCALCET2 6.2.051. Evaluate the integral. (Use C for the constant of integration.) - 49 dx x² +3 Need Help? Read It Watch It SUBMIT ANSWER 19. [-/1 Points] DETAILS MY NOTES SESSCALCET2 6.2.057. Evaluate the integral. (Remember to use absolute values where appropriate. Use C for the constant of integration.) 25+ x2 dxarrow_forwardLet (5,3,-7) and = (2, -3, -6). = Compute the following: u× u = -4(u xv) ux (-4v) (+v) × v=arrow_forwardLet a = (4, -2, -7) and 6 = (2,5, 3). (ã − ò) × (ã + b) =arrow_forward
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