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Ludmilka [50]
2 years ago
6

Which statements are true for the given geometric sequence? Check all that apply. The domain is the set of natural numbers. The

range is the set of natural numbers. The recursive formula representing the sequence is f(x 1) = Three-halves(f(x )) when f(1) = 4. An explicit formula representing the sequence is f(x) = 4(three-halves) Superscript x The sequence shows exponential growth.
Mathematics
2 answers:
tensa zangetsu [6.8K]2 years ago
8 0

Answer: a, c, d

Step-by-step explanation:

Nataly_w [17]2 years ago
7 0

The true statements for the given geometric sequence are as follows;

The domain is the set of natural numbers.

The recursive formula representing the sequence is f(x + 1) = 2 (f(x)) when f(1) = 4.

The sequence shows exponential growth.

We have to determine

Which statements are true for the given geometric sequence?

<h3>What is a geometric sequence?</h3>

In a Geometric Sequence, each term is found by multiplying the previous term by a constant.

A sequence of numbers has an exponential pattern when each successive number increases (or decreases) by the same percent.

The true statements for the given geometric sequence are as follows;

  • The domain is the set of natural numbers.

  • The recursive formula representing the sequence is f(x + 1) = 2 (f(x)) when f(1) = 4.

  • The sequence shows exponential growth.

To know more about Geometric sequence click the link given below.

brainly.com/question/14135673

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5 lb. 10 oz. − 3 lb. 1 oz. = lb. oz.
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There are 10 true-false questions and 20 multiple choice questions from which to choose a five-question quiz how many ways can t
beks73 [17]

Answer:

In 68229 ways can the quiz be selected such that there is atleast three multiple choice questions

Step-by-step explanation:

Given:

Number of True or false questions= 10

Number of multiple choice questions= 20

To Find:

How many ways can 5 questions can be selected if there must be at least three multiple choice questions =?

Solution:

Combination

A combination is a mathematical technique that determines the number of possible arrangements in a collection of items where the order of the selection does not matter. In combinations, you can select the items in any order.  

The question States there sholud be ATLEAST 3 multiple choice question,

So, we may have

(3 Multiple choice question and 2 true or false question) or

(4 Multiple choice question and 1 true or false question) or

(5 Multiple choice question and 0 true or false question)

Required Number of ways = (20C3 X10C2) +(20C4 X10C1) + (20C5 X10C0)

Required Number of ways =(\frac{20!}{20!(20-3)!}\times\frac{10!}{10!(10-2)!})+(\frac{20!}{20!(20-4)!} \times \frac{10!}{10!(10-1)!}) +(\frac{20!}{20!(20-4)!} \times \frac{10!}{10!(10-0)!})

Required Number of ways = ( 1140 x 42) + (4845 x 10) +(15504 x 1)

Required Number of ways = 47880+48450+15504

Required Number of ways = 68229

3 0
3 years ago
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