Advertisements
Advertisements
Verify y = log x + c is the solution of differential equation `x ("d"^2y)/("d"x^2) + ("d"y)/("d"x)` = 0
Concept: Formation of Differential Equations
For the differential equation, find the particular solution (x – y2x) dx – (y + x2y) dy = 0 when x = 2, y = 0
Concept: Differential Equations
A fair coin is tossed 8 times. Find the probability that it shows heads at least once
Concept: Bernoulli Trials and Binomial Distribution
Given X ~ B (n, p)
If n = 10 and p = 0.4, find E(X) and var (X).
Concept: Bernoulli Trials and Binomial Distribution
The probability mass function for X = number of major defects in a randomly selected
appliance of a certain type is
| X = x | 0 | 1 | 2 | 3 | 4 |
| P(X = x) | 0.08 | 0.15 | 0.45 | 0.27 | 0.05 |
Find the expected value and variance of X.
Concept: Variance of Binomial Distribution (P.M.F.)
Given X ~ B(n, p) if p = 0.6 and E(X) = 6, find n and Var(X).
Concept: Mean of Binomial Distribution (P.M.F.)
If the mean and variance of a binomial distribution are 18 and 12 respectively, then n = ______.
Concept: Binomial Distribution
The probability that certain kind of component will survive a check test is 0.6. Find the probability that exactly 2 of the next 4 tested components survive
Concept: Mean of Binomial Distribution (P.M.F.)
If X ~ B (n, p) and E(X) = 6 and Var (X) = 4.2, then find n and p.
Concept: Variance of Binomial Distribution (P.M.F.)
The negation of p ∧ (q → r) is ______________.
Concept: Algebra of Statements
Examine whether the following logical statement pattern is a tautology, contradiction, or contingency.
[(p→q) ∧ q]→p
Concept: Statement Patterns and Logical Equivalence
Without using truth tabic show that ~(p v q)v(~p ∧ q) = ~p
Concept: Algebra of Statements
Write the converse and contrapositive of the statement -
“If two triangles are congruent, then their areas are equal.”
Concept: Statement Patterns and Logical Equivalence
Examine whether each of the following statement patterns is a tautology or a contradiction or a contingency.
[~(~p ∧ ~q)] v q
Concept: Logical Connective, Simple and Compound Statements
Construct the switching circuit for the following statement : [p v (~ p ∧ q)] v [(- q ∧ r) v ~ p]
Concept: Application of Logic to Switching Circuits
Express the following statement in symbolic form and write its truth value.
"If 4 is an odd number, then 6 is divisible by 3 "
Concept: Statement Patterns and Logical Equivalence
Prove that the following statement pattern is equivalent :
(p ∨ q) → r and (p → r) ∧ (q → r)
Concept: Statement Patterns and Logical Equivalence
If p ˄ q = F, p → q = F, then the truth value of p and q is ______.
Concept: Truth Value of Statement
Using truth table prove that p ↔ q = (p ∧ q) ∨ (~p ∧ ~q).
Concept: Logical Connective, Simple and Compound Statements
Construct the simplified circuit for the following circuit:

Concept: Application of Logic to Switching Circuits
