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Solution - Geometric Sequences

The common ratio is: r=0.2
r=-0.2
The sum of this series is: s=63
s=63
The general form of this series is: an=750.2n1
a_n=75*-0.2^(n-1)
The nth term of this series is: 75,15,3.0000000000000004,0.6000000000000001,0.12000000000000002,0.024000000000000007,0.004800000000000002,0.0009600000000000003,0.00019200000000000009,3.840000000000002E05
75,-15,3.0000000000000004,-0.6000000000000001,0.12000000000000002,-0.024000000000000007,0.004800000000000002,-0.0009600000000000003,0.00019200000000000009,-3.840000000000002E-05

Other Ways to Solve

Geometric Sequences

Step-by-step explanation

1. Find the common ratio

Find the common ratio by dividing any term in the sequence by the term that comes before it:

a2a1=1575=0.2

a3a2=315=0.2

The common ratio (r) of the sequence is constant and equals the quotient of two consecutive terms.
r=0.2

2. Find the sum

5 additional steps

sn=a*((1-rn)/(1-r))

To find the sum of the series, plug the first term: a=75, the common ratio: r=-0.2, and the number of elements n=3 into the geometric series sum formula:

s3=75*((1--0.23)/(1--0.2))

s3=75*((1--0.008000000000000002)/(1--0.2))

s3=75*(1.008/(1--0.2))

s3=75*(1.008/1.2)

s3=750.8400000000000001

s3=63.00000000000001

3. Find the general form

an=arn1

To find the general form of the series, plug the first term: a=75 and the common ratio: r=0.2 into the formula for geometric series:

an=750.2n1

4. Find the nth term

Use the general form to find the nth term

a1=75

a2=a1·rn1=750.221=750.21=750.2=15

a3=a1·rn1=750.231=750.22=750.04000000000000001=3.0000000000000004

a4=a1·rn1=750.241=750.23=750.008000000000000002=0.6000000000000001

a5=a1·rn1=750.251=750.24=750.0016000000000000003=0.12000000000000002

a6=a1·rn1=750.261=750.25=750.0003200000000000001=0.024000000000000007

a7=a1·rn1=750.271=750.26=756.400000000000002E05=0.004800000000000002

a8=a1·rn1=750.281=750.27=751.2800000000000005E05=0.0009600000000000003

a9=a1·rn1=750.291=750.28=752.5600000000000013E06=0.00019200000000000009

a10=a1·rn1=750.2101=750.29=755.120000000000002E07=3.840000000000002E05

Why learn this

Geometric sequences are commonly used to explain concepts in mathematics, physics, engineering, biology, economics, computer science, finance, and more, making them a very useful tool to have in our toolkits. One of the most common applications of geometric sequences, for example, is calculating earned or unpaid compound interest, an activity most commonly associated with finance that could mean earning or losing a lot of money! Other applications include, but are certainly not limited to, calculating probability, measuring radioactivity over time, and designing buildings.

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