wFor the following exercises, approximate the mass of the homogeneous lamina that has the shape of given surface S . Round to four decimal places. 292. Evaluate ∬ s ( x + y + z ) d S , where S is the surface defined parametrically by R ( u , v ) = ( 2 u + v ) i + ( u − 2 v ) j + ( u + 3 v ) k for 0 ≤ u ≤ 1 , and 0 ≤ v ≤ 2 .
wFor the following exercises, approximate the mass of the homogeneous lamina that has the shape of given surface S . Round to four decimal places. 292. Evaluate ∬ s ( x + y + z ) d S , where S is the surface defined parametrically by R ( u , v ) = ( 2 u + v ) i + ( u − 2 v ) j + ( u + 3 v ) k for 0 ≤ u ≤ 1 , and 0 ≤ v ≤ 2 .
wFor the following exercises, approximate the mass of the homogeneous lamina that has the shape of given surface S. Round to four decimal places.
292. Evaluate
∬
s
(
x
+
y
+
z
)
d
S
, where S is the surface defined parametrically by
R
(
u
,
v
)
=
(
2
u
+
v
)
i
+
(
u
−
2
v
)
j
+
(
u
+
3
v
)
k
for
0
≤
u
≤
1
, and
0
≤
v
≤
2
.
3. A different 7-Eleven has a bank of slurpee fountain heads. Their available flavors are as follows: Mountain
Dew, Mountain Dew Code Red, Grape, Pepsi and Mountain Dew Livewire. You fill five different cups full
with each type of flavor. How many different ways can you arrange the cups in a line if exactly two Mountain
Dew flavors are next to each other?
3.2.1
Business
What is the area of this figure?
5 mm
4 mm
3 mm
square millimeters
11 mm
Submit
8 mm
Work it out
9 mm
University Calculus: Early Transcendentals (4th Edition)
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