Fill in the P(X=x) values to give a legitimate probability distribution for the discrete random variable X, whose possible values are -2, 2, 4, 5, and 6. Value x of X -2 2 4 5 6 X P(x = x) 0 0.11 0.22 0.16

MATLAB: An Introduction with Applications
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Chapter1: Starting With Matlab
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**Instructions:**

Fill in the \( P(X = x) \) values to give a legitimate probability distribution for the discrete random variable \( X \), whose possible values are \( -2, 2, 4, 5, \) and \( 6 \).

**Table:**

| Value \( x \) of \( X \) | \( P(X = x) \) |
|--------------------------|----------------|
| -2                       | □              |
| 2                        | 0.11           |
| 4                        | 0.22           |
| 5                        | 0.16           |
| 6                        | □              |

**Explanation:**

To complete the probability distribution, the probabilities must sum to 1. You need to calculate the missing probabilities for \( X = -2 \) and \( X = 6 \), ensuring the total sums up to 1.
Transcribed Image Text:**Instructions:** Fill in the \( P(X = x) \) values to give a legitimate probability distribution for the discrete random variable \( X \), whose possible values are \( -2, 2, 4, 5, \) and \( 6 \). **Table:** | Value \( x \) of \( X \) | \( P(X = x) \) | |--------------------------|----------------| | -2 | □ | | 2 | 0.11 | | 4 | 0.22 | | 5 | 0.16 | | 6 | □ | **Explanation:** To complete the probability distribution, the probabilities must sum to 1. You need to calculate the missing probabilities for \( X = -2 \) and \( X = 6 \), ensuring the total sums up to 1.
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