Use the Principle of Mathematical Induction to show that the statement is true for all natural numbers n.3 + 3 ?
+ 3 ?
2 + ... + 3 ?
n - 1 = 
What will be an ideal response?
First we show that the statement is true when n = 1.
For n = 1, we get 3 = = 3.
This is a true statement and Condition I is satisfied.
Next, we assume the statement holds for some k. That is,
is true for some positive integer k.
We need to show that the statement holds for k + 1. That is, we need to show that
So we assume that is true and add the next term,
to both sides of the equation.
3 + 3 ? + 3 ?
2 + ... + 3 ?
k - 1 + 3 ?
(k + 1) - 1=
+ 3 ?
(k + 1) - 1
= + 3
k
= +
=
=
=
Condition II is satisfied. As a result, the statement is true for all natural numbers n.
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Solve the problem. Round your answer to 2 decimal places when necessary.In a given year, the population of a certain country is about 185 million. The overall birth rate is 17.6 births per 1000. The overall death rate is 10.4 deaths per 1000. Based on births and deaths alone (not counting immigration), about how much does the population of the country increase during this year?
A. 1.33 million people B. 0.13 million people C. 3.26 million people D. 13.32 million people
Factor. Check by multiplying.2 + 12a + 8b
A. 2(1 + 6a + 4b) B. 2(1 + 12a + 8b) C. 12(1 + a + b) D. 2(0 + 6a + 4b)
Factor by substitution.p4 + 3p2 - 18
A. (p2 - 3)(p2 - 6) B. (p2 + 3)(p2 - 6) C. (p2 - 3)(p2 + 6) D. (p - 3)(p + 6)
Graph the system of inequalities.x + 2y ? 2y ? x
A.
B.
C.
D.