Answer:
-13v^4 + v^3 - 10v (if simplified)
Step-by-step explanation:
combine like terms
(-7v^4 - 5v) - (-5v^3 - 2v)+ ( - 7v - 6v^4 - 4v^3)
-7v^4 + -6v^4 = -13v^4
-5v^3 + -4v^3 = v^3 (the five becomes positive because of the negative sign infront of the parenthesis) Example: -(-5v^3) = +5v^3
-13v^4 + v^3 -5v -(-2v) -7v (now we have the -2 left alone in the parenthesis which means it becomes positive too) Example: -(-2v) = +2v
-5v +2v - 7v = -3v -7v = -10v
Answer: -13v^4 + v^3 - 10v
Answer:
8 and 9
Step-by-step explanation:
√64 = 8
√81 = 9
√74 falls inbetween those 2
a. The customer buys from outlet 1.
b. The customer does not buy from outlet 2.
c. The customer does not buy from outlet 1 or does not buy from outlet 2.
d. The customer does not buy from outlet 1 and does not buy from outlet 2.
Answer:
Step-by-step explanation:
Given
--- From outlet 1 alone
--- From outlet 2 alone
--- From both
Solving (a): Buys from outlet 1;
This is represented as: P(A) and the solution is:
Solving (b): Does not buy from outlet 2;
This is represented as: P(B'):
First, calculate the probability that the customer buys from 2
Using the complement rule, we have:
Solving (c): Does not buy from 1 or does not buy from 2
This is represented as:
And the solution is:
Using complement rule:
The equation becomes:
Solving (d): Does not buy from 1 or does not buy from 2
This is represented as:
And it is calculated as:
Answer:
Step-by-step explanation:
Given the pair of numbers - |-11| and - (-11), we want to determine which is greater or whether they are equal
First lets rewrite both numbers.
- |-11| = -11 (note that the modulus sign will change any negative value into a positive value and that's why |-11| is equivalent to 11)
- (-11) = 11 (note that the negative sign here was retained since it is not an absolute value like the former)
It can be seen that both numbers are therefore not equal i.e - |-11| is less than - (-11). Hence the expression - |-11| < - (-11) is a true statement
The ratio in its simplest form is 1/4.
We need to determine the ratio in the simplest form between 30 minutes and 2 hours.
To obtain the required ratio, the calculation must be done in a single unit of measurements, therefore change the hour calculation into minutes.
We know that 1 hour is equivalent to 60 minutes.
Therefore,
Thus, the required ratio is calculated below:
Hence, the ratio in its simplest form is 1/4.
For more information about Ratio click the link given below.
Let X be the number of traffic accidents that occur on a particular stretch of road during a month. X follows a Poisson distribution with a mean of μ =7.3
The probability function of X is given by
P(X=x) =
We have mean =7.3
P(X=x) =
Probability of observing exactly four accidents on this stretch of road next month is
P(X=4) =
= (0.0006755 * 2839.8241)/24
P(X=4) = 1.9184113/ 24
P(X=4) = 0.0799338
P(X=4) = 0.079934
Probability that there will be exactly four accidents on this stretch of road next month is 0.079934
Answer:
4 miles in 1 min
Step-by-step explanation: