Prove that for .
?
List the steps involved.

What will be an ideal response?


Step 1: We must verify that the statement is true for . However, the statement is true.

Step 2: Let's suggest that the statement is true for , i.e. . Let's examine it for by substituting k + 1 for n in the inequality.

.

Let's transform this inequality as Because the statement is true for and for the statement is also true for .


Mathematics

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