Use the Divergence Theorem to find the flux of F across the surface σ with outward orientation. F x , y , z = x 3 − e y i + y 3 + sin z j + z 3 − x y k ; where σ is the surface of the solid bounded above by z = 4 − x 2 − y 2 and below by the xy -plane.
Use the Divergence Theorem to find the flux of F across the surface σ with outward orientation. F x , y , z = x 3 − e y i + y 3 + sin z j + z 3 − x y k ; where σ is the surface of the solid bounded above by z = 4 − x 2 − y 2 and below by the xy -plane.
Use the Divergence Theorem to find the flux of F across the surface
σ
with outward orientation.
F
x
,
y
,
z
=
x
3
−
e
y
i
+
y
3
+
sin
z
j
+
z
3
−
x
y
k
;
where
σ
is the surface of the solid bounded above by
z
=
4
−
x
2
−
y
2
and below by the xy-plane.
Use Euler's method to numerically integrate
dy
dx
-2x+12x² - 20x +8.5
from x=0 to x=4 with a step size of 0.5. The initial condition at x=0 is y=1. Recall
that the exact solution is given by y = -0.5x+4x³- 10x² + 8.5x+1
Find an equation of the line tangent to the graph of f(x) = (5x-9)(x+4) at (2,6).
Find the point on the graph of the given function at which the slope of the tangent line is the given slope.
2
f(x)=8x²+4x-7; slope of the tangent line = -3
A Problem Solving Approach To Mathematics For Elementary School Teachers (13th Edition)
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