Find ∂ z / ∂ x and ∂ z / ∂ y by implicit differentiation , and confirm that the results obtained agree with those predicted by the formulas in Theorem 13.5.4. e x y cos y z − e y z sin x z + 2 = 0
Find ∂ z / ∂ x and ∂ z / ∂ y by implicit differentiation , and confirm that the results obtained agree with those predicted by the formulas in Theorem 13.5.4. e x y cos y z − e y z sin x z + 2 = 0
Find
∂
z
/
∂
x
and
∂
z
/
∂
y
by implicit differentiation, and confirm that the results obtained agree with those predicted by the formulas in Theorem 13.5.4.
e
x
y
cos
y
z
−
e
y
z
sin
x
z
+
2
=
0
With integration, one of the major concepts of calculus. Differentiation is the derivative or rate of change of a function with respect to the independent variable.
Write the given third order linear equation as an equivalent system of first order equations with initial values.
Use
Y1 = Y, Y2 = y', and y3 = y".
-
-
√ (3t¹ + 3 − t³)y" — y" + (3t² + 3)y' + (3t — 3t¹) y = 1 − 3t²
\y(3) = 1, y′(3) = −2, y″(3) = −3
(8) - (888) -
with initial values
Y
=
If you don't get this in 3 tries, you can get a hint.
Question 2
1 pts
Let A be the value of the triple integral
SSS.
(x³ y² z) dV where D is the region
D
bounded by the planes 3z + 5y = 15, 4z — 5y = 20, x = 0, x = 1, and z = 0.
Then the value of sin(3A) is
-0.003
0.496
-0.408
-0.420
0.384
-0.162
0.367
0.364
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