Systolic Blood Pressure Assume that the mean systolic blood pressure of normal adults is 120 millimeters of mercury (mmHg) and the standard deviation is 5.6. Assume the variable is normally distributed. Round the answers to at least 4 decimal places and intermediate z-value calculations to 2 decimal places. Part: 0 / 3 Part 1 of 3 If an individual is selected, find the probability that the individual's pressure will be between 120 and 122.6 mmHg. P(120< X < 122.6) = X Ś

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**Systolic Blood Pressure**

Assume that the mean systolic blood pressure of normal adults is 120 millimeters of mercury (mmHg) and the standard deviation is 5.6. Assume the variable is normally distributed. Round the answers to at least 4 decimal places and intermediate z-value calculations to 2 decimal places.

**Part: 0 / 3**

**Part 1 of 3**

If an individual is selected, find the probability that the individual’s pressure will be between 120 and 122.6 mmHg.

\[
P(120 < X < 122.6) = \boxed{ \phantom{} }
\]

Buttons provided: 
- X (for incorrect answer)
- Circular arrow (for reset/refresh)

The problem requires calculating the probability within a specified range based on the given mean and standard deviation, utilizing the properties of the normal distribution.
Transcribed Image Text:**Systolic Blood Pressure** Assume that the mean systolic blood pressure of normal adults is 120 millimeters of mercury (mmHg) and the standard deviation is 5.6. Assume the variable is normally distributed. Round the answers to at least 4 decimal places and intermediate z-value calculations to 2 decimal places. **Part: 0 / 3** **Part 1 of 3** If an individual is selected, find the probability that the individual’s pressure will be between 120 and 122.6 mmHg. \[ P(120 < X < 122.6) = \boxed{ \phantom{} } \] Buttons provided: - X (for incorrect answer) - Circular arrow (for reset/refresh) The problem requires calculating the probability within a specified range based on the given mean and standard deviation, utilizing the properties of the normal distribution.
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