Answer:
I think it’s d
Step-by-step explanation:
Answer: the right bottom corner
HOPE THIS HELPS !!
Answer:
360 feet
Step-by-step explanation:
Area = 2XY = 2 · 2,700 = 5,400
Perimeter = (2 · 2X) + 3Y = 4X + 3Y
Y = 5,400 / 2X = 2,700 / X
Perimeter = 4X + 8,100/X
P'(x) = 4 - 8,100/X² = 0
4 = 8,100/X²
X² = 8,100 / 4 = 2,025
X = √2,025 = 45
Y = 2,700 / 45 = 60
Perimeter = (4 · 45) + (3 · 60) = 180 + 180 = 360 feet
It is not unusual to get 5 when a pair of dice is rolled.
Probability of an event is the ratio of number of favorable outcomes to the total number of outcomes. Probability is a measure of how likely an event is going to happen.
Given is that you get 5 when pair of dice is rolled.
Number of outcomes for sum of 5 = 4
The sample space for the outcomes for sum of 5 is {(1, 4), (2, 3), (3, 2), (4, 1)}.
So, we can write the probability of getting 5 as -
P(getting 5) = 4/36
P(getting 5) = 1/9
Although the probability of getting a 5 is low, but is not completely zero. So, it is not unusual to get 5.
Therefore, it is not unusual to get 5 when a pair of dice is rolled.
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Not at all. In fact, there are 4 ways to roll it:
A 1 and a 4 or a 4 and a 1
A 2 and a 3 or a 3 and a 2
There are 36 possible ways you can roll 2 dice, so those 4 possibilities represent a 4/36 = 1/9 chance of rolling a total of 5 between two dice.
half person).
Answer:
40.62
Step-by-step explanation:
that's the answer I got
Answer:
They're 24 in total so i guess it would be 24 units^2
Step-by-step explanation:
How many apples are there in the bowl? Show your work!
Answer:
6 apples
Step-by-step explanation:
3+2+1 = 6 and 6 × 2 is 12 therefore half of the fruit is 6 so six apples (if that makes sense HAHA)
Answer: 2.4
Step-by-step explanation:
Given : The weights, in pounds, of the cats in an animal adoption center are normally distributed.
The confidence interval is (7.9,12.7) (1)
Let be the sample mean of the weights, in pounds, of the cats in an animal adoption center.
We know that the confidence interval for population mean is given by :-
(2)
From (1) and (2)
Subtracting (3) from (4), we get
Hence, the margin of error is E = 2.4