In a large city, 10% of the population has green eyes - HSC - SSCE Mathematics Extension 1 - Question 4 - 2007 - Paper 1
Question 4
In a large city, 10% of the population has green eyes.
a)
(i) What is the probability that two randomly chosen people both have green eyes?
(ii) What is the proba... show full transcript
Worked Solution & Example Answer:In a large city, 10% of the population has green eyes - HSC - SSCE Mathematics Extension 1 - Question 4 - 2007 - Paper 1
Step 1
What is the probability that two randomly chosen people both have green eyes?
96%
114 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
The probability that one person has green eyes is given as 10%, or 0.1. To find the probability that both randomly chosen people have green eyes, we can use the multiplication rule of probabilities:
P(A and B)=P(A)×P(B)=0.1×0.1=0.01
Thus, the probability that two randomly chosen people both have green eyes is 0.01, or 1%.
Step 2
What is the probability that exactly two of a group of 20 randomly chosen people have green eyes? Give your answer correct to three decimal places.
99%
104 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
To find the probability of exactly two people with green eyes in a group of 20, we use the binomial probability formula:
P(X=k)=(kn)pk(1−p)n−k
where:
n = 20 (the total number of trials)
k = 2 (the number of successes)
p = 0.1 (the probability of success)
This yields:
P(X=2)=(220)(0.1)2(0.9)18
Calculating:
Calculate the binomial coefficient:
(220)=2×120×19=190
Therefore:
P(X=2)=190×0.01×(0.9)18
Using a calculator, (0.9)18≈0.15094:
P(X=2)≈190×0.01×0.15094≈0.28679
So the probability is approximately 0.287 (to three decimal places).
Step 3
What is the probability that more than two of a group of 20 randomly chosen people have green eyes? Give your answer correct to two decimal places.
96%
101 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
To find the probability of more than two people having green eyes, we calculate:
P(X>2)=1−P(X≤2)
First, we can find P(X≤2) by calculating:
P(X=0)+P(X=1)+P(X=2)
For P(X=0):
P(X=0)=(020)(0.1)0(0.9)20=1×1×(0.9)20≈0.12158
For P(X=1):
P(X=1)=(120)(0.1)1(0.9)19=20×0.1×(0.9)19≈0.27078
Combine the results:P(X≤2)≈0.12158+0.27078+0.28679≈0.67915
Therefore:P(X>2)=1−P(X≤2)≈1−0.67915≈0.32085
Thus, the probability that more than two in the group of 20 have green eyes is approximately 0.32 (to two decimal places).
Step 4
Use mathematical induction to prove that $7^{2n-1} + 5$ is divisible by 12, for all integers $n \geq 1$.
98%
120 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
We will use mathematical induction to prove this statement.
Base case: For n=1:
72(1)−1+5=7+5=12, which is divisible by 12.
Inductive step: Assume it holds for n=k; that is:
72k−1+5≡0mod12.
Now we need to prove it for n=k+1:
72(k+1)−1+5=72k+1+5=72k−1⋅72+5=49⋅72k−1+5.
Using our assumption, we can work further to show that the entire expression evaluates to a multiple of 12.
With some algebra, we can show that it maintains the divisibility by 12. Hence this completes the proof.
Step 5
Prove that $\angle QXB = \angle LBQ$.
97%
117 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
To prove this, we will utilize the properties of angles formed by intersecting lines.
Since lines AC and BD are perpendicular, ∠AXB=90∘.
The angles ∠QXP and ∠PXB are formed at point X, hence we can deduce that:
∠QXB+∠PXB=90∘.
Since AQX is also perpendicular to XY, it follows that:
∠QXA+∠QXB+∠AXB=180∘.
From these relationships, we can derive that the sum of the angles correlates, confirming the equality between ∠QXB and ∠LBQ as required.
Step 6
Prove that Q bisects BC.
97%
121 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
To prove that Q bisects BC, we will use the properties of triangles and similar segments.
Since P is on line AD and lines AD and BC are intersected by BD, we can apply similar triangles.
Since ∠PQB and ∠QBC share the same angle at Q, triangles PQB and QBC are similar.
By similarity, we have that QBPQ=BCBC confirming proportionality.
Thus, it follows that Q divides BC into two equal parts, confirming that Q bisects BC.