An accounting office has 6 incoming telephone lines. The probability distribution of the number of busy lines, X, is as follows: xixi  0 1 2 3 4 5 6 Total P(X=xi)P(X=xi)  0.03 0.11 0.16 0.33 0.2 0.12 0.05 1 Use the random variable notation to express symbolically each of the following: -X=1 P(X=3) P(X=4)=0.2  The probability of an event in which the number of busy lines is exactly 4 is equal to 0.2. -X=1 P(X=3) P(X=4)=0.2  The probability of an event in which the number of busy lines is exactly 3. -X=1 P(X=3) P(X=4)=0.2  An event in which the number of busy lines is exactly 1.   Use the above probability distribution table to find the following: P(1

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An accounting office has 6 incoming telephone lines. The probability distribution of the number of busy lines, X, is as follows:

xixi  0 1 2 3 4 5 6 Total
P(X=xi)P(X=xi)  0.03 0.11 0.16 0.33 0.2 0.12 0.05 1
  1. Use the random variable notation to express symbolically each of the following:
    • -X=1 P(X=3) P(X=4)=0.2  The probability of an event in which the number of busy lines is exactly 4 is equal to 0.2.
    • -X=1 P(X=3) P(X=4)=0.2  The probability of an event in which the number of busy lines is exactly 3.
    • -X=1 P(X=3) P(X=4)=0.2  An event in which the number of busy lines is exactly 1.
     
  2. Use the above probability distribution table to find the following:
    1. P(1<X≤2)=P(1<X≤2)= (Round the answer to 2 decimals)
    2. P(1≤X<3)=P(1≤X<3)= (Round the answer to 2 decimals)
    3. P(X<6)=
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