Today, the waves are crashing onto the beach every 4.9 seconds. The times from when a person arrives at the shoreline until a crashing wave is observed follows a Uniform distribution from 0 to 4.9 seconds. Round to 4 decimal places where possible. The probability that the wave will crash onto the beach between 0.6 and 1.9 seconds after the person arrives is P(0.6 < x < 1.9) =  The probability that it will take longer than 1.48 seconds for the wave to crash onto the beach after the person arrives is P(x ≥≥ 1.48) =  Find the maximum for the lower quartile.  seconds.

Question

Today, the waves are crashing onto the beach every 4.9 seconds. The times from when a person arrives at the shoreline until a crashing wave is observed follows a Uniform distribution from 0 to 4.9 seconds. Round to 4 decimal places where possible.

The probability that the wave will crash onto the beach between 0.6 and 1.9 seconds after the person arrives is P(0.6 < x < 1.9) = 

The probability that it will take longer than 1.48 seconds for the wave to crash onto the beach after the person arrives is P(x ≥≥ 1.48) = 

Find the maximum for the lower quartile.  seconds.

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