Step-by-step explanation:
I added together his estimations and then subtracted the total from how much money was in his bank.
2,477+2,263+3,218=7,958
10,236-7,958=2,278
I really hope this helps
5:8 i sthe answer to your question...
X=8
The reason is because the red figure is just a dilation of the yellow figure.
6-2=4
4+4=8
So the answer is 8
Answer:
Minimum dimensions are r=3cm, h=9cm
Minimum Cost=$254.47
Step-by-step explanation:
Volume of a Cylinder=πr²h
Volume of the Open Top Cylinder=81π cm³.
Therefore:
πr²h=81π
The bottom costs $3 per cm² and the side costs $1 per cm².
Total Surface Area of the open top Cylinder= πr²+2πrh
Cost, C=3πr²+2πrh
As the Volume is fixed.
πr²h=81π
r²h=81
h=81/r²
Modifying C,


We differentiate C with respect to r
C'=
At the minimum cost, C'=0.
Next we solve C'=0 for r

6πr³-162π=0
6πr³=162π
r³=27
r=3
The dimensions of the cylinder at minimum cost are therefore:
r=3 cm
h=81/9=9cm
The minimum cost of the Cylinder
C=3πr²+2πrh
=(3XπX3²)+(2XπX3X9)
=$254.47
Answer:
3.75k + 2.25p = 14
Step-by-step explanation:
The cost from the weights of kumquats can be represented by 3.75k.
The cost from the weights of Asian pears can be represented by 2.25p.
Using the standard form equation, Ax + By = C, replace Ax and By with these terms.
Then, plug in 14 as C:
Ax + By = C
3.75k + 2.25p = 14
So, the equation is 3.75k + 2.25p = 14