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tia_tia [17]
3 years ago
6

An Olympic archer is able to hit the bull’s-eye 15% of the time. Assume each shot is independent of the others. If she shoots 7

arrows, what’s the probability of each of the following results? a) Her first bull’s-eye comes on the third arrow. b) She misses the bull’s-eye at least once.c) Her first bull’s-eye comes on the fourth or fifth arrow.d) She gets exactly 4 bull’s-eyes.e) She gets at least 4 bull’s-eyes.f) She gets at most 4 bull’s-eyes.
Mathematics
1 answer:
Alinara [238K]3 years ago
4 0

Answer:

a) 0.108

b) 1.00

c) 0.170

d) 0.0109

e) 0.0121

f) 0.999

Step-by-step explanation:

Success: p = 0.15

Failure: q = 1 - p = 0.85

a) q²p = 0.85² × 0.15

= 0.108375 = 0.108 (3 sf)

b) 1 - P(all hits)

= 1 - p⁷ = 1 - 0.15⁷

= 0.9999982914= 1.00 (3 sf)

c) q³p + q⁴p = 0.1704196875

= 0.170 (3 sf)

d) 7C4×p⁴×q³ = 35 × 0.15⁴ × 0.85³

= 0.01088152734 = 0.0109 (3 sf)

e) P(4,5,6 or 7)

= 7C4×p⁴×q³ + 7C5×p⁵×q² +

7C6×p⁶×q + 7C7×p⁷×q⁰

= 0.01210317188 = 0.0121 (3 sf)

f) 1 - P(more than 4)

= 1-(0.01210317188-0.01088152734)

= 1 - 0.001221644531

= 0.9987783555 = 0.999 (3 sf)

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There are many three digit numbers that are each divisible by 7 and also 8 without a remainder.What is the largest of these thre
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3 years ago
Julie made identical necklaces out of shell she collected at the beach all together she we use 10 Brown shells 15 black shells a
Lelu [443]

Answer:

Therefore the number of brown shells in each necklace was  = 2 brown shells.

Step-by-step explanation:

If Julie made identical necklaces then we can say that number of each different colored shells were equally distributed among the necklaces.

So we can say that to find the number of necklaces we have to find the GCD (greatest common denominator) of the different colored shells.

Therefore the GCD of 10, 15 and 20 is 5.

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According to the Rational Root Theorem, which function has the same set of potential rational roots as the function g(x) = 3x^5
nata0808 [166]

Answer:

The correct option is A.

Step-by-step explanation:

The question is:

According to the Rational Root Theorem, which function has the same set of potential rational roots as the function g(x) = 3x5 – 2x4 + 9x3 – x2 + 12?

A).f(x) = 3x5 – 2x4 – 9x3 + x2 – 12

B).f(x) = 3x6 – 2x5 + 9x4 – x3 + 12x

C).f(x) = 12x5 – 2x4 + 9x3 – x2 + 3

D).f(x) = 12x5 – 8x4 + 36x3 – 4x2 + 48

Solution:

The function given to us is:

3x5 – 2x4 + 9x3 – x2 + 12

Find the factors of 12 and consider it as 'p'

The factors of 12 are:

p = +/- 1 , +/-2 , +/-3 , +/- 4 , +/-6

Now find the factors of 3 and consider it as 'q'

The factors of 3 are:

q = +/- 1 , +/- 3

We know that we write rational terms in p/q form.

Therefore the Rational roots are given by p/q

+/- 1 , +/-2 , +/-3 , +/- 4 , +/-6 , +/- 1/3 , +/- 2/3 , +/- 4/3

Now we will solve the first function given in part A.

f(x) = 3x^5 – 2x^4 - 9x^3 + x^2 - 12

Again find the factors of 12 and consider it as 'p'

The factors are:

p = +/- 1 , +/-2 , +/-3 , +/- 4 , +/-6

Now find the factors of 3 and consider it as 'q' .

q = +/- 1 , +/- 3

Rational root are given by p/q

+/- 1 , +/-2 , +/-3 , +/- 4 , +/-6 , +/- 1/3 , +/- 2/3 , +/- 4/3

Therefore the rational roots of the given function matches the rational roots of the given equation.

Hence the correct option is A

6 0
3 years ago
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