Find the flux of the vector field F across σ in the direction of positive orientation. F( x , y , z ) = e − y i − y j + x sin z k; σ is the portion of the elliptic cylinder r ( u , v ) = 2 cos v i + sin v j + u k with 0 ≤ u ≤ 5 , 0 ≤ v ≤ 2 π .
Find the flux of the vector field F across σ in the direction of positive orientation. F( x , y , z ) = e − y i − y j + x sin z k; σ is the portion of the elliptic cylinder r ( u , v ) = 2 cos v i + sin v j + u k with 0 ≤ u ≤ 5 , 0 ≤ v ≤ 2 π .
Find the flux of the vector field F across
σ
in the direction of positive orientation.
F(
x
,
y
,
z
)
=
e
−
y
i
−
y
j
+
x
sin
z
k;
σ
is the portion of the elliptic cylinder
r
(
u
,
v
)
=
2
cos
v
i
+
sin
v
j
+
u
k
with
0
≤
u
≤
5
,
0
≤
v
≤
2
π
.
Quantities that have magnitude and direction but not position. Some examples of vectors are velocity, displacement, acceleration, and force. They are sometimes called Euclidean or spatial vectors.
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
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, calculus and related others by exploring similar questions and additional content below.