Question

3. Buses arrive at a specified stop at 15-minute intervals starting at 7 A.M. That is, they arrive at 7, 7:15, 7:30, 7:45, an

1 0
Add a comment Improve this question Transcribed image text
Answer #1

P9N60 Anscer - Given that, If a passenger arrives at that is uniformiy distributed the probability is that he 10 minutes for

Add a comment
Know the answer?
Add Answer to:
3. Buses arrive at a specified stop at 15-minute intervals starting at 7 A.M. That is,...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A bus is scheduled to arrive at the bus stop every morning at 8:00 A.M; however,...

    A bus is scheduled to arrive at the bus stop every morning at 8:00 A.M; however, its arrival time is uniformly distributed between 7:55 A.M. and 8:05 A.M. The bus is considered to be on time if it is no more than 3 minutes early or 3 minutes late. Assuming that the bus arrivals are mutually independent for different days, give an approximation of the probability that out of 600 days, the bus is going to be on time more...

  • In order to attend an important 8 A.M. lecture, you arrive at the shuttle stop at...

    In order to attend an important 8 A.M. lecture, you arrive at the shuttle stop at a time distributed uniformly between 7:20 A.M. and 7:30 A.M. The time between consecutive shuttle arrivals is known to be exponentially distributed with mean 15 minutes. If the journey takes 30 minutes, what is the probability that you arrive late to the lecture?

  • 2. Suppose buses arrive at a bus stop according to an approximate Poisson process at a...

    2. Suppose buses arrive at a bus stop according to an approximate Poisson process at a mean rate of 4 per hour (60 minutes). Let Y denote the waiting time in minutes until the first bus arrives. (a) (5 points) What is the probability density function of Y? (b) (5 points) Suppose you arrive at the bus stop. What is the probability that you have to wait less than 5 minutes for the first bus? (c) (5 points) Suppose 10...

  • Currently the bus runs every 7 minutes during the day. Let X represent the amount of...

    Currently the bus runs every 7 minutes during the day. Let X represent the amount of time Sofia waits for the bus, assuming she arrives at the bus stop at a random time and the bus is running on schedule. (That is, the amount of time Sofia waits is uniformly distributed.) Find the following probabilities (use 2 decimal places for all answers): (a) The probability Sofia waits at most 2 minute(s) = (b) The probability Sofia waits less than 2...

  • 5. Suppose that a person commutes to work by bus. The person arrives at the bus...

    5. Suppose that a person commutes to work by bus. The person arrives at the bus stop at the same time every day. The waiting time is uniformly distributed from 5-10 minutes. a) What is the probability that the person waits between 5 minutes and 15 seconds to 7 minutes and 30 seconds? b) What is the probability that the person waits more than 7 minutes and 45 seconds?

  • For a passenger who arrives at a certain bus stop at a random moment in​ time,...

    For a passenger who arrives at a certain bus stop at a random moment in​ time, the time spent waiting for the bus is uniformly distributed from 0 to 9 minutes. What is the probability someone who arrives at this bus stop at a random moment will wait at least 7 minutes for the​ bus? (Round to the nearest tenth of a​ percent.)

  • C. In Regular Bus City, there is a shuttle bus that goes between Stop A and Stop B, with no stops...

    Question D C. In Regular Bus City, there is a shuttle bus that goes between Stop A and Stop B, with no stops in between. The bus is perfectly punctual and arrives at Stop A at precise five minute intervals (6:00, 6:05, 6:10, 6:15, etc.) day and night, at which point it immediately picks up all passengers waiting. Citizens of Regular Bus City arrive at Stop A at Poisson random times, with an average of 5 passengers arriving every minute,...

  • Buses arrive randomly to a certain bus stop at an average rate of 10 per hour...

    Buses arrive randomly to a certain bus stop at an average rate of 10 per hour during the 10AM to 7PM time period. If you get to this bus stop at 1:00PM, what is the probability that the next bus arrives before 1:12PM a).08647 b).1667 c).1353 d) no answer

  • The arrival time t(in minutes) of a bus at a bus stop is uniformly distributed between 10:00 A.M. and 10:03 A.M.

    The arrival time t(in minutes) of a bus at a bus stop is uniformly distributed between 10:00 A.M. and 10:03 A.M. (a) Find the probability density function for the random variable t. (Let t-0 represent 10:00 A.M.) (b) Find the mean and standard deviation of the the arrival times. (Round your standard deviation to three decimal places.) (с) what is the probability that you will miss the bus if you amve at the bus stop at 10:02 A M ? Round your answer...

  • 4. You arrive at a bus stop at 10 o'clock, knowing that the bus will arrive...

    4. You arrive at a bus stop at 10 o'clock, knowing that the bus will arrive at some time uniformly distributed between 10:00 and 10:30. (a) What is the probability that you will have to wait longer than 10 minutes? (b) If at 10:10 the bus has not yet arrived, what is the probability that you will have to wait at least an additional 2 minutes?

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT