QUESTION IMAGE
Question
select the correct answer from each drop - down menu
| hemoglobin level | age | |||
|---|---|---|---|---|
| less than 9 | 21 | 32 | 76 | 120 |
| between 9 and 11 | 49 | 52 | 40 | 147 |
| above 11 | 69 | 44 | 40 | 153 |
| total | 139 | 128 | 162 | 429 |
based on the data in the two - way table, the probability of being 25 - 35 years old given a hemoglobin level above 11 is
the probability of being 25 - 35 years old is
being 25 - 35 years old and having a hemoglobin level above 11 are dependent on each other.
Step1: Define conditional - probability formula
$P(A|B)=\frac{P(A\cap B)}{P(B)}$, here $A$ is being 25 - 35 years old, $B$ is having hemoglobin above 11. $P(A\cap B)=\frac{44}{429}$, $P(B)=\frac{153}{429}$, so $P(A|B)=\frac{44}{153}\approx0.29$.
Step2: Calculate probability of being 25 - 35
$P(A)=\frac{128}{429}\approx0.30$.
Step3: Check for dependence
If $P(A|B)
eq P(A)$, events are dependent. Since $0.29
eq0.30$, they are dependent.
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The probability of being 25 - 35 years old given a hemoglobin level above 11: $\frac{44}{153}\approx0.29$
The probability of being 25 - 35 years old: $\frac{128}{429}\approx0.30$
Being 25 - 35 years old and having a hemoglobin level above 11 are dependent on each other.