What is the first term in a geometric series if it is represented as 'a times r to the 0'?

Understanding Finite Geometric Series

Interactive Video
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Olivia Brooks
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Mathematics
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9th - 12th Grade
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1 plays
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Medium
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10 questions
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1.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
1
0
r
a
2.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
In a geometric series, what does each successive term represent?
The previous term added to the common ratio
The sum of all previous terms
The previous term multiplied by the common ratio
The previous term divided by the common ratio
3.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What is the purpose of multiplying the series by the common ratio 'r' during the derivation?
To find the sum of the series
To simplify the series
To align terms for subtraction
To increase the number of terms
4.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What happens when you subtract 'r times S sub n' from 'S sub n' in the derivation?
The series becomes infinite
The common ratio becomes zero
The first and last terms remain
All terms cancel out
5.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What is the final formula for the sum of a finite geometric series?
S sub n = a - a * r^(n+1) / (1 - r)
S sub n = a + a * r^(n+1)
S sub n = a * r^n
S sub n = a / (1 - r)
6.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
Why is the derived formula useful for calculating the sum of a geometric series?
It simplifies the calculation
It increases the number of terms
It eliminates the need for a common ratio
It provides an exact answer
7.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
In the example provided, what is the common ratio of the geometric series?
3
0
1/2
100
8.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
How many terms are in the example geometric series?
100
200
50
101
9.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What is the sum of the series in the example when calculated using the formula?
3
6
12
9
10.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What does the example demonstrate about the precision of the calculator?
It cannot handle large numbers
It is always inaccurate
It can be slightly off
It is always exact
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