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Firdavs [7]
3 years ago
9

3,666 = 39(p +25) 20 POINTS + BRANLIESTTT PLEASE HELP

Mathematics
2 answers:
daser333 [38]3 years ago
7 0

Answer:

p=69

Step-by-step explanation:

39(p+25)=3666

39p+975=3666

       -975    -975

39p=2691

----      ----

39         39

p=69

iVinArrow [24]3 years ago
6 0

Answer:p=69

Step-by-step explanation:

Let's solve your equation step-by-step.

3666=39(p+25)

Step 1: Simplify both sides of the equation.

3666=39(p+25)

3666=(39)(p)+(39)(25)(Distribute)

3666=39p+975

Step 2: Flip the equation.

39p+975=3666

Step 3: Subtract 975 from both sides.

39p+975−975=3666−975

39p=2691

Step 4: Divide both sides by 39.

39p /39  =  2691 /39

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Tems11 [23]
An interesting twist to a binomial distribution problem.

Given:
p=55%=0.55 for probability of success in solicitation
x=4=number of successful solicitations
n=number of calls to be made
P(x,n,p)>=89.9%=0.899  (from context, it is >= and not =, which is almost impossible)

From context of question, all calls are assumed independent, with constant probability of success, so binomial distribution is applicable.

The number of successes, x, is then given by
P(x)=C(n,x)p^x(1-p)^{n-x}where
p=probability of success
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Here we need n such that
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given
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Method 1: if a cumulative binomial distribution table is available, we can look up n=9,10,11 and find
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Method 2: using technology.
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Method 3: using simple calculator
Here we need to calculate the probabilities for each value of n=10,11 and sum the probabilities of FAILURE S=P(0,n,0.55)+P(1,n,0.55)+P(2,n,0.55)+P(3,n,0.55)
so that the probability of success is 1-S.
For n=10,
P(0,10,0.55)=0.000341
P(1,10,0.55)=0.004162
P(2,10,0.55)=0.022890
P(3,10,0.55)=0.074603
So that
S=0.000341+0.004162+0.022890+0.074603
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and Probability of getting 4 successes (or more) 
=1-S
=0.898005, missing target by 0.1%

So she will have to make 11 phone calls, bring up the probability to 93.9%.  The work is similar to that of n=10.
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