Are you wrestling with arithmetic sequences? Do terms like “common difference,” “nth term,” and “sum of an arithmetic series” leave you scratching your head? You’re not alone! Arithmetic sequences can be a tricky topic for many students. The good news is, with practice and a clear understanding of the fundamental formulas, you can master them. This post aims to provide you with the answers to a typical arithmetic sequences worksheet, helping you check your work and solidify your understanding. Remember, just having the answers isn’t enough; it’s crucial to understand *how* to arrive at those answers. So, after checking your work against the provided solutions, take the time to review the relevant formulas and techniques if you made any mistakes.
Before we dive into the answers, let’s briefly recap the key concepts. An arithmetic sequence is a sequence of numbers where the difference between any two consecutive terms is constant. This constant difference is called the “common difference,” often denoted by ‘d’. The general formula for the nth term of an arithmetic sequence is: an = a1 + (n – 1)d, where a1 is the first term and n is the term number. The sum of the first n terms of an arithmetic series is: Sn = n/2 * (a1 + an) or Sn = n/2 * [2a1 + (n – 1)d]. These formulas are your best friends when tackling arithmetic sequence problems!
Arithmetic Sequences Worksheet Answers
Below are the answers to a sample arithmetic sequences worksheet. Please note that worksheets vary, so your specific worksheet might have slightly different questions. However, the underlying principles and formulas used to solve these problems will remain the same. Use these answers to check your work and identify areas where you might need further practice.
For organizational purposes, we will use HTML list.
Sample Worksheet Questions and Answers
Here are some example questions and their corresponding answers. This section simulates a common type of question set found in arithmetic sequences worksheets.
- Question 1: Find the 20th term of the arithmetic sequence: 2, 5, 8, 11,…
- Answer: a20 = 59
- Explanation: a1 = 2, d = 3. a20 = 2 + (20-1) * 3 = 2 + 19 * 3 = 2 + 57 = 59
- Answer: d = -4
- Explanation: d = 11 – 15 = -4 (or any subsequent term subtracted from the previous term)
- Answer: 3, 10, 17, 24, 31
- Explanation: Successively add the common difference (d=7) to the previous term.
- Answer: S10 = 145
- Explanation: a1 = 1, d = 3. a10 = 1 + (10-1)*3 = 28. S10 = 10/2 * (1 + 28) = 5 * 29 = 145
- Answer: a1 = 4
- Explanation: a8 = a1 + (8-1)*4 => 32 = a1 + 28 => a1 = 32 – 28 = 4
- Answer: n = 20
- Explanation: a1 = 5, d = 4, an = 81. 81 = 5 + (n-1)*4 => 76 = (n-1)*4 => 19 = n-1 => n=20
- Answer: 17
- Explanation: Arithmetic mean = (10 + 24) / 2 = 34 / 2 = 17
- Answer: d = 3
- Explanation: a2 = a1 + d = 5; a4 = a1 + 3d = 11. Subtracting the first equation from the second gives: 2d = 6 => d = 3
- Answer: S = 242
- Explanation: a1 = 2, d = 4, an = 42. First find n: 42 = 2 + (n-1)*4 => 40 = (n-1)*4 => 10 = n-1 => n = 11. Then, S = (11/2)*(2+42) = (11/2)*44 = 11*22 = 242
- Answer: 8, 13, 18
- Explanation: We have a sequence: 3, _, _, _, 23. This means a1 = 3 and a5 = 23. Therefore, 23 = 3 + (5-1)d => 20 = 4d => d=5. The three arithmetic means are thus 3+5=8, 8+5=13, 13+5=18.
Remember, these are just examples. The key to mastering arithmetic sequences is to understand the formulas and practice applying them to different types of problems. Don’t just memorize the formulas; understand *why* they work. If you struggle with a particular problem, break it down into smaller steps and identify which formula(s) you need to use. Good luck with your studies!
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