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  • 6. After the world noticed the sweet calculator watch Mr. Passwater was wearing one day, everyone began wanting to emulate him and get their own calculator watch. As a result, one factory had to build an industrial machine to help manufacture and package the watches so they could be shipped to customers around the world. In a certain simulation, the total number of watches the machine could produce after n hours can be modeled using an arithmetic sequence. The machine had produced 4306 watches after 2 hours, and 15,071 total watches after 7 hours. Based on the simulation, how many total watches will the machine produce by the end of hour 12?

Question

6. After the world noticed the sweet calculator watch Mr. Passwater was wearing one day,…

6. After the world noticed the sweet calculator watch Mr. Passwater was wearing one day, everyone began wanting to emulate him and get their own calculator watch. As a result, one factory had to build an industrial machine to help manufacture and package the watches so they could be shipped to customers around the world. In a certain simulation, the total number of watches the machine could produce after n hours can be modeled using an arithmetic sequence. The machine had produced 4306 watches after 2 hours, and 15,071 total watches after 7 hours. Based on the simulation, how many total watches will the machine produce by the end of hour 12?

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Answer

The correct answer is: $25836$

Explanation

The total watches form an arithmetic sequence $a_n=a_1+(n-1)d$. We are given $a_2=4306$ and $a_7=15071$, so we can find the common difference $d$ and then compute $a_{12}$.

Steps:

  1. Difference between terms: $$a_7-a_2=(7-2)d \Rightarrow 15071-4306=5d$$
  2. Solve for $d$: $$10765=5d \Rightarrow d=2153$$
  3. Find $a_1$ and then $a_{12}$: $$a_2=a_1+d \Rightarrow 4306=a_1+2153 \Rightarrow a_1=2153$$

$$a_{12}=a_1+11d=2153+11(2153)=2153\cdot12=25836$$

Therefore, by the end of hour 12 the machine will have produced 25,836 watches.