Answer:
aₙ = (-1)ⁿ2(3)ⁿ⁻³
Step-by-step explanation:
The formula for the nth term of a geometric sequence is
aₙ = a₁rⁿ⁻¹
We can get the value for r by dividing aₙ by aₙ₋₁.
a₄/a₃ = 6 ÷ (-2)
a₄/a₃ = -3
r = -3
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a₁ = -2/9
aₙ = (-2/9)(-3)ⁿ⁻¹
aₙ = (-2/3²)(-3)ⁿ⁻¹ Factor out the 3s from the 9
aₙ = -2(3²)(-1)ⁿ⁻¹(3)ⁿ⁻¹ Factor -1 from and -3
aₙ = (-1)(2)(-1)ⁿ⁻¹(3)ⁿ⁻³ Combine like terms
aₙ = 2(-1)ⁿ⁻²(3)ⁿ⁻³ Multiply the -1 term by (-1)² (=1)
The (-1)ⁿ term makes the terms alternately positive and negative.
Since, the nth term of a geometric sequence is,
Where, a is the first term of the sequence,
r is the common ratio,
Here, the given geometric sequence is,
Thus, the first term of the sequence is,
And, the common ratio,
Hence, the nth term of the sequence is,
D) There is no association between commuting preferences and gender.
670 animals
First, round both numbers to the nearest ten. Remember that the numbers 4 and under round down (e.g. 143 = 140) and the numbers 5 and above round up (e.g. 145 = 150).
218 = rounds up = 220
454 = rounds down = 450
Finally, add the rounded numbers together.
220 + 450 = 670
The zoo has approximately 670 animals.
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