In the spherical coordinates, the triple integral of f(rho,θ,ϕ)=cosϕ, over the region 0≤θ≤2π, 0≤ϕ≤π/4, 3≤rho≤4 is
.
Spherical coordinates of the gadget denoted as (r, θ, Φ) is the coordinate machine specifically used in three-dimensional systems. In 3 dimensional area, the round coordinate gadget is used for finding the surface region. those coordinates specify 3 numbers: radial distance, polar angles, and azimuthal perspective.
To convert a factor from spherical coordinates to Cartesian coordinates, use equations x=ρsinφcosθ,y=ρsinφsinθ, and z=ρcosφ. To transform a factor from Cartesian coordinates to spherical coordinates, use equations ρ2=x2+y2+z2,tanθ=yx, and φ=arccos(z√x2+y2+z2).
Consider the function:
f(0,0,0)=cos
35057
Spherical Coordinates:
x=psin cos
y=psin sine
z = p cos
DV = p² sin dpdøde
1=[[[psin p cos dpdøde
003
= "deƒân (20)deſp°dp
-(2x) (1-1) (343-27)
12
pm (316
34
3
79/3
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<h2>Division</h2><h3></h3><h3>10 x b = 90</h3><h3>is the same as</h3><h3>b x 10 = 90</h3><h3></h3><h3>divide both sides by 10</h3><h3>b x 10 ÷ 10 = b</h3><h3>90 ÷ 10 = 9</h3><h3></h3><h3>so</h3><h3>b = 9</h3>
Answer:
value of x is 22°
Step-by-step explanation:
It is 22 degrees because it is originally a right angle which is 90°. If you do 90-68 you would get 22. The reason you would subtract is because 68 is already used of the 90° angle. My explanation isn't that good.
You first divide 414 by 46 to see how much it costs for 1 lb. After the calculation, you get 9 lb. Then you multiply that by 29 to get 261.
Answer:
24 direct proportional with height to remove proportional needs to given constant
24 = k 3
24 ÷ 3= K
k = 8
Step-by-step explanation:
value of k is 8