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Thread: STA301 Statistics and Probability Assignment No.3 Solution Fall 2013

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    18 STA301 Statistics and Probability Assignment No.3 Solution Fall 2013

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    STA301 Statistics and Probability Assignment No.3 Solution Fall 2013

    Assignment No.3 (Course STA301)
    Fall 2012 (Total Marks 15)
    Your Assignment must be uploaded/ submitted before or on 23:59 January 16th, 2013
    Rules for Marking
    It should be clear that your Assignment will not get any credit IF:
     The Assignment submitted, via email, after due date.
     The submitted Assignment is not found as MS Word document file.
     There will be unnecessary, extra or irrelevant material.  The Statistical notations/symbols are not well-written i.e., without using MathType software.
     The Assignment will be copied from handouts, internet or from any other student’s file. Copied material (from handouts, any book or by any website) will be awarded ZERO MARKS. It is PLAGIARISM and an Academic Crime.
     The medium of the course is English. Assignment in Urdu or Roman languages will not be accepted.
     Assignment means Comprehensive yet precise accurate details about the given topic quoting different sources (books/articles/websites etc.). Do not rely only on handouts. You can take data/information from different authentic sources (like books, magazines, website etc) BUT express/organize all the collected material in YOUR OWN WORDS. Only then you will get good marks.
    Objective(s) of this Assignment:
    This assignment is uploaded in order to built understanding about the
     Properties of probability distributions.
     Application of probability distribution in real life.
     Mathematical expectation and its properties.
    Assignment No: 3 (Lessons 23-30)
    Question 1: Marks: 4+4=8
    a) Given the function below
    f (x)  c(1 x) 0  x 1
    Obtain the value of “c”, so that f (x) is a density function.
    b) A random variable “X” following binomial distribution has its mean and variance,
    18 and 3.52 respectively. Calculate the value of “n” and “p”.
    Question 2: Marks: 5+2=7
    a) During a laboratory experiment the number of radio active particles passing
    through a counter in one milli-second is 4.
    I. What is the probability that 6 particles enter the counter in a given millisecond?
    II. What is the probability that at most two particles enter the counter in a given
    b) If E(X)  5 , then calculate the value of E(Y) . Where Y is defined as
    Y  3X 5
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