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nignag [31]
3 years ago
9

Could someone check if this graph is correct or not please.

Mathematics
2 answers:
torisob [31]3 years ago
7 0

Answer:

It looks right to me good job

scZoUnD [109]3 years ago
5 0
Yes you’re correct. You’re welcome
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Suppose that only 25% of all drivers come to a complete stop at an intersection having flashing red lights in all directions whe
alukav5142 [94]

Answer:

The probability that at most 6 will come to a complete stop is 0.7857.

Step-by-step explanation:

Let <em>X</em> = number of drivers come to a complete stop at an intersection having flashing red lights in all directions when no other cars are visible.

The probability of the event <em>X</em> is, P (X) = <em>p</em> = 0.25.

The sample of drivers randomly selected is of size, <em>n</em> = 20.

The random variable <em>X</em> follows a binomial distribution with parameters <em>n</em> = 6 and <em>p</em> = 0.25.

The probability function of  Binomial distribution is:

P(X=x)={n\choose x}p^{x}(1-p)^{n-x};\ x=0,1,2,...

Compute the probability that at most 6 will come to a complete stop as follows:

P (X ≤ 6) = P (X = 0) + P (X = 1) + P (X = 2) + P (X = 3)

                     + P (X = 4) + P (X = 5) + P (X = 6)

   ={20\choose 0}(0.25)^{0}(1-0.25)^{20-0}+{20\choose 1}(0.25)^{1}(1-0.25)^{20-1}+{20\choose 2}(0.25)^{2}(1-0.25)^{20-2}\\...+{20\choose 0}(0.25)^{6}(1-0.25)^{20-6}\\=0.0032+0.0211+0.0669+0.1339+0.1897+0.2023+0.1686\\=0.7857

Thus, the probability that at most 6 will come to a complete stop is 0.7857.

4 0
3 years ago
PLEASE PLEASE PLEASE HELPPP MEEE !!! Identify all of the roots of the function.
pav-90 [236]

Answer:

4, 3, -2 are the 3 roots of the function

3 0
3 years ago
Read 2 more answers
Grant's credit card has an apr of 11.28% and it just changed its compounding period from monthly to daily . What happen to the i
madreJ [45]

Answer:

C. It will increase by about 0.6%

Step-by-step explanation:

Since, the effective interest rate is,

r=(1+\frac{i}{n} )^{n} -1

Where, i is the stated interest rate,

n is the number of compounding periods,

Here, i = 11.28 % = 0.1128,

n = 365  ( 1 year = 365 days ),

Hence, the effective interest rate would be,

r=(1+\frac{0.1128}{365})^{365}  -1

=0.119388521952

Now, the changes in effective interest rate = Effective interest rate - Stated interest rate

= 0.119388521952 - 0.1128

= 0.006588521952 ≈ 0.006 = 0.6 %  

Hence, It will increased by about 0.6 %,

Option A is correct.

Hope this helps :)

7 0
3 years ago
Help will mark Brainliest!!​
GuDViN [60]

Answer:

8/9n - 3

Step-by-step explanation:

7 0
3 years ago
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Which number makes the following number sentence true 3+6=6+
3241004551 [841]

Answer:

3

Step-by-step explanation:

4 0
3 years ago
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