Answer:
![2880\ ft^{3}](https://tex.z-dn.net/?f=2880%5C%20ft%5E%7B3%7D)
Step-by-step explanation:
The computation of the total amount of water needed could be determined by using the volume formula which is shown below:
![Volume = L \times W \times D](https://tex.z-dn.net/?f=Volume%20%3D%20L%20%5Ctimes%20W%20%5Ctimes%20D)
where
L = length,
W = width,
and D = depth.
Now putting the values to the above formula
Therefore, the total amount of water needed is ![2880\ ft^{3}](https://tex.z-dn.net/?f=2880%5C%20ft%5E%7B3%7D)
We simply applied the above formula
Answer:
14/33
Step-by-step explanation:
The total amount of beads is 8+4 = 12. 8 of these are black beads, so that is what we want, so 8/12 or 2/3. For the second one, one black bead is already taken so 8-1 = 7 are left and for the total 12 - 1 = 11 are left, so 7/11. Multiply this by 2/3 and we get 14/33.
Answer:
weight of a water=0.5
spherical ball is filled With water=0.95.
so dear for
22\7*0.5*0.95=1.49
Answer:
(d) 10
Step-by-step explanation:
Multiply by x and divide by its coefficient:
(43.65)(8.79) = (0.4365)(87.9)x
(43.65)(8.79)/((0.4365)(87.9)) = x
At this point, any calculator can give you the answer. It is, perhaps, more satisfying to work out the answer without a calculator.
x = (43.65)/(0.4365) × (8.79)/(87.9)
In the first quotient, the numerator is 100 times the denominator; in the second, the denominator is 10 times the numerator.
x = (100) × (1/10) = 100/10
x = 10
_____
Moving the decimal point to the right 1 place multiplies the numerical value by 10.