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Finding the number of terms in an arithmetic progression sounds complicated at first, but is actually quite simple. All you need to do is put the given values into the formula t n = a + (n – 1) d and do the math to find n . Where: n is the number of terms, t n is the last term in the sequence, a is the first term in the sequence, and d is the difference.
- For example, the following arithmetic progression: 107, 101, 95…-61. We have: the first term is 107, the second term is 101 and the last term is -61. This is the information you need to solve the problem.
- In the above example, after replacing the values into the formula, we have: -61 = 107 + (n – 1) (-6). Subtract 107 from both sides, leaving -168 = (n – 1) (-6). Then, keep dividing both sides by -6, we get 28 = n – 1. Finally, add 1 to both sides, the answer will be n= 29.
Advice
- The difference of the first term and the last term is always divisible by the common difference.
Warning
- Avoid confusing the difference between the first and last terms with the difference.
This article is co-authored by a team of editors and trained researchers who confirm the accuracy and completeness of the article.
The wikiHow Content Management team carefully monitors the work of editors to ensure that every article is up to a high standard of quality.
This article has been viewed 1,842 times.
Finding the number of terms in an arithmetic progression sounds complicated at first, but is actually quite simple. All you need to do is put the given values into the formula t n = a + (n – 1) d and do the math to find n . Where: n is the number of terms, t n is the last term in the sequence, a is the first term in the sequence, and d is the difference.
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