Answer:
Step-by-step explanation:
Answer:
5 meters
Step-by-step explanation:
We have to calculate 25% of 20 meters
So we rewrite the equation
25% × 20
× 20
0.25 × 20
= 5 meters
25% of 20 meters is 5 meters
Final answer:
The question pertains to finding theclosest point on a plane to a specific point and determining the local extremum points of a function using differential calculus. Due to word limitations, a step-by-step solution couldn't be provided.
Explanation:
The subject of this question is Mathematics, specifically it deals with the concepts of planes in three-dimensional space and finding local extremum points of a function. Firstly, to find the point on the plane x - 2y + 3z = 12 closest to the point (0, 2, 2), we can use the perpendicular distance formula from a point to a plane. To find the local maximum, minimum values and the saddle points of the function F(x, y) = -y − by cos(x), differential calculus should be used. Unfortunately, this requires more than 100 words, therefore I am unable to provide a step-by-step solution here.
Learn more about Differential Calculus and Plane Geometry here:
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A.
25%
B.
50%
C.
400%
Answer:
0.2
Step-by-step explanation:
3(2x–7)=5–(1–x)
6x-21 = 5 - 1 + x
subtract x from both sides
5x - 21 = 5-1
combine like terms
5x - 21 = 4
add 21 to both sides
5x = 25
divide both sides by 5
x = 5
Answer:
Step-by-step explanation:
The computation of the meters of cloth that were not use is shown below:
= Used for making a curtain - purchase of curtain cloth
Hence, the meters of cloth that was not used is