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SpyIntel [72]
3 years ago
4

A coordinate grid is mapped on a video game screen, with the origin in the lower-left corner. A game designer programs a helicop

ter to follow a path that can be modeled by a quadratic function with a vertex at (16, 20) and passing through the point (4, 25). She also programs an airplane to move along a linear path that passes through the points (0, 18) and (30, 20). Which system of equations can be used to determine whether the paths of the helicopter and airplane cross?
Mathematics
2 answers:
Kipish [7]3 years ago
7 0
Answer:<span>

1) y = (1/15)x + 18
2) y = (5/144) (x - 16)^2 + 20</span>

Solution:

1) The solution consists in establishing the equations that model the two paths.

2) Let's start with the easiest one. It is the linear path.

You have that the equation is a line that passes through the points (0,18) and (30,20). This equation is found using this formula:

y - b          d - b
------ =    ----------
x - a          c - a

where the two points are (a,b) and (c,d)

So, for the two points given:

y - 18        20 - 18        2
-------- =   ----------- = ------
x - 0           30 - 0        30

=> (y - 18)*30 = x*2
=>30y - 540 = 2x
=> 30y = 2x + 540
=> y = 2x / 30 + 540 / 30

=> y = x/15 + 18 ---------------> this is the first equation of the system.

3) Now, find the equation for the path modeled by the quadratic function.

The vertex form of a quadratic function is: y = A (x - h)^2 + k

where the vertex is (k,h).

Then, so far you can write y = A (x - 16)^2 + 20

Now, replace the coordinates of the point (4,25) to find the value of A:

25 = A (4 - 16)^2 + 20

=> 25 = A (-12)^2 + 20

=> 25 = A*144 + 20

=> 144A = 25 - 20

=> 144 A = 5

=> A = 5 / 144

=> y = (5 / 144) (x - 16)^2 + 20 ---------> this is the second equation of the system.

System:

1) y = (1/15)x + 18
2) y = (5/144) (x - 16)^2 + 20
Rama09 [41]3 years ago
6 0
The Answer is A, Im looking for the quiz :)
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Consumer complaints are frequently reported to the Better Business Bureau. Industries with the most complaints to the Better Bus
kiruha [24]

Answer:

(a)

\begin{array}{ccc}{Industry} & {Frequency} & {\%Frequency} & {Bank} & {26} & {13\%} & {Cable} & {44} & {22\%} & {Car} & {42} & {21\%}& {Cell} & {60} & {30\%} & {Collection} & {28} & {14\%} & {Total} & {200} & {100\%} \ \end{array}

(b): Cell industry

(c) See Explanation

Step-by-step explanation:

Given (Missing from the question)

Bank = 26

Cable = 44

Car = 42

Cell = 60

Collection = 28

Total = 200

Solving (a) Show the frequency and percent frequency.

The percentage frequency is calculated by:

\%Freq = \frac{Freq}{Total} * 100\%

So. we have:

\%Freq = \frac{26}{200} * 100\% = 13\% --  Bank

\%Freq = \frac{44}{200} * 100\% = 22\% --- Cable

\%Freq = \frac{42}{200} * 100\% = 21\% --- Car

\%Freq = \frac{60}{200} * 100\% = 30\% --- Cell

\%Freq = \frac{28}{200} * 100\% = 14\% --- Collection

The table becomes:

\begin{array}{ccc}{Industry} & {Frequency} & {\%Frequency} & {Bank} & {26} & {13\%} & {Cable} & {44} & {22\%} & {Car} & {42} & {21\%}& {Cell} & {60} & {30\%} & {Collection} & {28} & {14\%} & {Total} & {200} & {100\%} \ \end{array}

Solving (b): The industry with the highest complaints

From the above table, the highest frequency is 60 and this represents the number of complaints of Cell industry.

Hence, the cell industry has the highest number of complaints

Solving (c): Comment

The percentage frequency table shows that the industry with the highest number of complaints is the cell industry (at 30%) and the industry with the least is the banking industry (at 13%)

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efjgfiufsonrngStep-by-step explanation:

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4 years ago
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Alexxandr [17]

Answer:

6.67

Step-by-step explanation:

20/3=6.6666666

Rounded to two decimals is 6.67

(the 6 is rounded up because it is above 4)

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Answer:

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gulaghasi [49]

•  Expand (2a + b)²:

(2a + b)²

= (2a + b) · (2a + b)


Multiply out the brackets by applying the distributive property of multiplication:

= (2a + b) · 2a + (2a + b) · b

= 2a · 2a + b · 2a + 2a · b + b · b

= 2²a² + 2ab + 2ab + b²


Now, group like terms together, and you get

= 2²a² + 4ab + b²

= 4a² + 4ab + b²    <———    expanded form  (this is the answer).


I hope this helps. =)


Tags:  <em>special product square of a sum algebra</em>

3 0
3 years ago
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