1) Use the density curve given and answer the following questions: a) What is the width? What is the height? What is the area? b) P(less than 2) = c) P(greater than 3) = d) P(between 1 and 4) =

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1) Use the density curve given and answer the following questions:
a) What is the width? What is the height? What is the area?
b) P(less than 2) =
c) P(greater than 3) =
d) P(between 1 and 4) =

The image features a graph illustrating a probability density function. This graph is a rectangular shape, commonly known as a uniform distribution.

### Graph Details:

- **Axes:**
  - The x-axis is labeled "x" and ranges from 0 to 6.
  - The y-axis is labeled "p" and ranges from 0 to 0.5.

- **Distribution:**
  - The rectangular region begins at x = 1 and ends at x = 5, indicating the limits of the distribution.
  - The height of the rectangle is approximately 0.25, suggesting a uniform probability density.

- **Shading and Border:**
  - The area under the curve is shaded in grey, showing the region of uniform probability.
  - The outline of the rectangle is bordered in red.

This type of distribution is often used to model situations where all outcomes in a range are equally likely.
Transcribed Image Text:The image features a graph illustrating a probability density function. This graph is a rectangular shape, commonly known as a uniform distribution. ### Graph Details: - **Axes:** - The x-axis is labeled "x" and ranges from 0 to 6. - The y-axis is labeled "p" and ranges from 0 to 0.5. - **Distribution:** - The rectangular region begins at x = 1 and ends at x = 5, indicating the limits of the distribution. - The height of the rectangle is approximately 0.25, suggesting a uniform probability density. - **Shading and Border:** - The area under the curve is shaded in grey, showing the region of uniform probability. - The outline of the rectangle is bordered in red. This type of distribution is often used to model situations where all outcomes in a range are equally likely.
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