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Thursday, March 8

Thursday, March 8. Essential Questions. How can we use geometric sequences and series?. Notes Over 4.9. Geometric Sequences. An geometric sequence has a common ratio between consecutive terms. The n th term of an geometric sequence is given by:.

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Thursday, March 8

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  1. Thursday, March 8 Essential Questions • How can we use geometric sequences and series?

  2. Notes Over 4.9 Geometric Sequences An geometric sequence has a common ratio between consecutive terms. The nth term of an geometric sequence is given by: The sum of the first n terms of an geometric series is:

  3. Notes Over 4.9 Geometric Sequences Decide whether the sequence is geometric. Yes

  4. Notes Over 4.9 Geometric Sequences Decide whether the sequence is geometric. No

  5. Notes Over 4.9 Geometric Sequences Write a rule for the nth term of the geometric sequence. Then find a12.

  6. Notes Over 4.9 Geometric Sequences Write a rule for the nth term of the geometric sequence. Then find a12.

  7. Notes Over 4.9 Geometric Sequences Write a rule for the nth term of the geometric sequence. Then find a12.

  8. Notes Over 4.9 Geometric Sequences Write a rule for the nth term of the geometric sequence. Then find a12.

  9. Notes Over 4.9 Geometric Sequences Find the sum of the first n terms of the geometric series..

  10. Notes Over 4.9 Infinite Geometric Sequences The sum of an infinite geometric series is: provided l r l < 1. If l r l > 1, then the series has no sum.

  11. Notes Over 4.9 Infinite Geometric Sequences Find the sum of the infinite geometric series, if it has one.

  12. Notes Over 4.9 Infinite Geometric Sequences Find the sum of the infinite geometric series, if it has one.

  13. Notes Over 4.9 Infinite Geometric Sequences Find the sum of the infinite geometric series, if it has one.

  14. Notes Over 11.3 Pg. 159, 4.9 #1-24

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