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Vinil7 [7]
3 years ago
11

Math sequence- pls help

Mathematics
2 answers:
Ipatiy [6.2K]3 years ago
7 0
I think Geometric sequence
Sonbull [250]3 years ago
3 0

Answer:

Geometric sequence.

Step-by-step explanation:

Simply defined, a complex sequence is a set of numbers in a sequence, whose numbers include imaginary numbers. In essensce, not all numbers in a complex sequence are real numbers.

A geometric sequence is a sequence in which each number must be multiplied by a number (referred to as the common ratio) to attain the next value in the sequence.

An arithmetic sequence is a sequence of numbers in which one has to add a value to the previous number to attain the next number.

A simple sequence can be defined as a pattern of numbers, such as a list of multiples.

In the given sequecne:

3, 9, 27, 81, 243

One can see that each element is three times the last. Diving any two consecutive elements (elements next to each other) will result in the numerical value of (3). Therefore this is a geometric sequence since it fits all of the criteria of a geometric sequence and even has a common ratio of (3).

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Greatest Common Factor (GCF)<br> 1. 12a - 27
Ilya [14]

Answer:

  3

Step-by-step explanation:

The factors of 12a are ...

  2×2×3×a

The factors of 27 are ...

  3×3×3

The only common factor is 3.

_____

  12a -27 = 3(4a -9)

8 0
3 years ago
Each time Kristine gets paid, she spends $20 and saves the rest. If the amount Kristine earns is represented by x and the amount
faust18 [17]

We are given that Kristine spends $20 and saves the rest each time she get paid.

We can use slope-intercept form y=mx+b to represent the equation.

Where x represents the amount Kristine earns and y represents the amount she saves.

Kristine spends $20. Therefore b= -20.

Plugging mx as just x and b=-20.

<h3>y = x-20.</h3><h3>If we plug y=0, we get </h3><h3>0 = x-20</h3><h3>x=20.</h3><h3>We can see in 4th option we have x-intercept =20.</h3><h3>Therefore, correct option is 4th option. </h3><h3 />

4 0
3 years ago
Read 2 more answers
HELPPPP WHATS THE LATERAL AREA
AVprozaik [17]

Answer:

3cm

Step-by-step explanation:

6 0
3 years ago
If a factory can produce 34 candies in 10 minutes, how many candies will it<br> produce in 1 hour?
IrinaVladis [17]

Answer: 204

Step-by-step explanation:

As there are 6 lots of 10 minutes in an hour, you would have to times 34 by 6.

34x6=204

Hope this helps :)

4 0
3 years ago
Six months ago you won $1,000,000 on a scratch-off lottery ticket and invested your winnings with a financial advisor at the inv
statuscvo [17]

Answer:

The total worth of the investment after 6 months is T =  $ 1004004

The geometric mean of the above monthly returns is   \= G  =  0.001

Step-by-step explanation:

From the question we are told that

  The growth for each month are

             R1 = -0.4, R2= 0.67, R3 = 1.0, R4 = -0.5, R5 = 0.2, R6 = -0.165

   The amount invested is  A = \$ 1,000,000

   The number period of the investment is  6 months

Generally the worth of the investment after each month is

              G_i =  G_p * (1 + R_i)

Here G_p is the worth of the investment the previous year

          R_i is the growth for that month

So considering the first month

          G_1 =  G_p (1 + R_1)

Here G_p =  A

So

             G_1 = 1000000 (1 -0.4)

              G_1 = 600000

Considering the second month

  Here G_p =  600000

So

    G_2 =  600000 (1 + 0.67)

=>  G_2 =  1002000

Considering the third month

    Here G_p =  1002000

So    

    G_3 =  1002000 (1 + 1)

    G_3 =  2004000

Considering the fourth month

    Here G_p =  2004000

So  

    G_4= 2004000 (1 + -0.5)

    G_4= 1002000

Considering the fifth  month

    Here G_p =   1002000

So  

    G_5= 1002000 (1 + 0.2)

    G_5= 1202400

Considering the six month

       Here G_p =  1202400

So  

    G_6= 1202400 (1 -0.165)

    G_6= 1004004

Generally the total  worth of the investment after 6 months is T =  $ 1004004

Generally the geometric mean of the monthly returns is  

           \= G  =  \sqrt[n]{ [(1 + R_1 ) *  \cdots (1 + R_n)} ]-1

Here  n represents the number of months which has a value  n =  6

So

  \= G = \sqrt[6]{[(1+ (-0.4 )) * (1 + 0.67) * \cdots * (1 + (-0.165))]} - 1

     

    \= G  =  0.001

5 0
3 years ago
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