Answer:
20 I think
Step-by-step explanation:
I mean I would say it is 20
I got 784 inches cubed, I cut the figure into two, the first one was 8×4×14=448, the second was 8×3×14=336,
therefore 448+336=784
Answer:
Answer shown below
Step-by-step explanation:
The range has a lower limit but no upper band limit
(124, infinity)
Answer: (Mayadc821 wrote this anwser check theyre account for more)
Since you know the x and y values, you just have to plug these into the linear slope-intercept equation:
y = mx + b
-10 = m(1) + b
m + b = -10
b = -10 - m
Now that we have a value for b, we can plug this into the other equation:
8 = m(-8) + b
8 = -8m + (-10 - m)
8 = -9m -10
18 = -9m
m = -2
Now that we know what m is equal to, we can plug this into our first equation to get an answer for b:
b = -10 - m
b = -10 -(-2)
b = -10 + 2
b = -8
Our final equation is y = -2x - 8
Answer:
There is 1 possible combination
Step-by-step explanation:
There are 5 assignments and they must be completed. 5. We want to find the number of combinations, then we use the formula of combinations.
![nCr =\frac{n!}{r!(n-r)!}](https://tex.z-dn.net/?f=nCr%20%3D%5Cfrac%7Bn%21%7D%7Br%21%28n-r%29%21%7D)
Where n is the total number of objects and you choose r from them
Then
![n= 5\\\\r = 5](https://tex.z-dn.net/?f=n%3D%205%5C%5C%5C%5Cr%20%3D%205)
![5C5 =\frac{5!}{5!(5-5)!}](https://tex.z-dn.net/?f=5C5%20%3D%5Cfrac%7B5%21%7D%7B5%21%285-5%29%21%7D)
![5C5 =\frac{5!}{5!(0)!}](https://tex.z-dn.net/?f=5C5%20%3D%5Cfrac%7B5%21%7D%7B5%21%280%29%21%7D)
![5C5 =\frac{5!}{5!}](https://tex.z-dn.net/?f=5C5%20%3D%5Cfrac%7B5%21%7D%7B5%21%7D)
![5C5 =1](https://tex.z-dn.net/?f=5C5%20%3D1)