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relliott4950
12.12.2020 •
Mathematics
Come on, shake your body baby
Do the conga
I know you can't control yourself any longer
Come on, shake your body baby
Do the conga
I know you can't control yourself any longer.
Come on, shake your body baby
Do the conga
I know you can't control yourself any longer
Feel the rhythm of the music getting stronger
Don't you fight it till you've tried it
Do the conga beat
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Ответ:
Answer
Come on, shake your body baby
Do the conga
I know you can't control yourself any longer.
Come on, shake your body baby
Do the conga
Step-by-step explanation:
whats yalls tiktok
Ответ:
A) Part A:
For House 1: exponential functionFor House 2: linear functionB) Part B:
For house 1: For house 2:C) Part C:
For house 1: $619,166.21For house 2: $571,000Explanation:
Number of years House 1 (value in dollars) House 2 (value in dollars)
1 253,980 256,000
2 259,059.60 263,000
3 264,240.79 270,000
Part A: Type of function.
To state what type of function, linear or exponential, can be used to describe the value of the houses after a fixed number of years, you can look whether the pattern corresponds to an arithmetic or an geometric sequence.
Aritmetic sequences are linear functions and what characterizes them is that there is a common constant difference between any two consecutive terms of the sequence.
For the first house, when you subtract the first term from the second term, you find a difference of 5,079.6. When you subtract the second term from the third, you find a difference of 5,181.19, hence this does not represent a linear function.
Geometric sequences are exponential functions and what charaterizes them is that there is a common constant ratio between any two consecutive terms of the sequence.
For the first house that is:
ratio = 259,059.6 / 253,980 = 1.02ratio = 264,240.79 / 259,059.6 = 1.01999 ≈ 1.02Hence, you conclude that an exponential function can be used to describe the value of the first house.
For the second house you will find that the difference of value after each year is constant:
difference = 263,000 - 256,000 = 7,000 (in dollars)difference = 270,000 - 263,000 = 7,000 (in dollars)Hence, you conclude that a linear function can be used to describe the value of the second house.
Part B: Functions for each house to describe the value of the house f(x), in dollars, after x years.
For an exponential function (first house), the function f(x) will be the first term (the initial value of the house) multiplied by the ratio raised to the power equal to the number of years:
For a linear function (second house), the function f(x) wil lbe the initial term (the initial value of the house) plus the product of the common difference with the number of years:
Part C: Greatest value in 45 years
For the first house, the value in dollars will be:
For the second house, the value in dollars will be:
Therefore, there will be a significant difference in the value of both houses after 45 years.
The first house will have a value 619.166.21 - 571,000 = 48,166.21 dollars greater than the second house.