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Marrrta [24]
4 years ago
5

HELP!!!!!

Mathematics
2 answers:
SCORPION-xisa [38]4 years ago
5 0

Answer:

  1, 5, 2, 4, 3, 7, 6

Step-by-step explanation:

After dividing by the leading coefficient, each equation can be put into the form ...

  x² + y² + ax +by +c = 0

Subtracting c and separately completing the square for x-terms and y-terms, we get ...

  x² + ax + (a/2)² + y² + by + (b/2)² = -c + (a/2)² + (b/2)²

  (x +a/2)² + (y +b/2)² = r² = (a/2)² + (b/2)² -c . . . . . rewrite in standard form

Ordering by the square of the radius length will match the ordering by radius length, so we just need to compute (a/2)² +(b/2)² -c for each given equation. I find it convenient to let a calculator or spreadsheet do this calculation (see attached).

In the order the equations are given, the square of the radius is ...

  3, 18, 45, 23, 5, 117, 46

So the order of the equations from smallest radius to largest is ...

  1, 5, 2, 4, 3, 7, 6

tangare [24]4 years ago
4 0

Answer:

x2 + y2 − 2x + 2y − 1 = 0

↓

5x2 + 5y2 − 20x + 30y + 40 = 0

↓

x2 + y2 − 4x + 4y − 10 = 0

↓

4x2 + 4y2 + 16x + 24y − 40 = 0

↓

x2 + y2 − 8x − 6y − 20 = 0

↓

x2 + y2 + 12x − 2y − 9 = 0

↓

2x2 + 2y2 − 28x − 32y − 8 = 0

You're welcome my comrades

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If the world's population increased exponentially from 5.937 billion in 1998 to 7.238 billion in 2014 and continued to increase
horrorfan [7]

Answer: The world's population in 2015 would have been 7.333 billion.

Step-by-step explanation:

  • Since the increase in population is an exponential one. It then follows a geometric progression defined by, T_{n} = ar^{n - 1}

  • Where T_{n} is the nth term, <em>a</em> is the 1st term, <em>r</em> is the common ratio.

  •  Therefore, the population in <u>1998</u> is the <u>first term</u> <em>a</em> = 5.937 billion. The population in <u>2014</u> corresponds to the <u>17th term </u>(i.e., <em>n </em>= 17) = 7.238 billion.

Hence, T_{n} = ar^{n - 1}

7.238 billion = 5.937 billion × r^{17 - 1}

r^{16} = (7.238 billion) ÷ (5.937 billion)

= 1.219

<em>r</em> = \sqrt[16]{1.219}

<em>r</em> = 1.0125

To get the population in 2015, which is the 18th term. We use

T_{n} = ar^{n - 1}

T_{18} = 5.937 billion × 1.0125^{18 - 1}

= 5.937 billion × 1.0125^{17}  

= 5.937 billion × 1.235

T_{18} = 7.333 billion

4 0
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Answer: 121

Step-by-step explanation:

I calculated, trust. Also took the test.

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Setler [38]

question:

x=2 ,<em>y</em>=12 and x=4,y=3,find n and k if y is inversely proportional to x and k is a constant

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Answer:

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Step-by-step explanation:

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10*400 = 4,000

1 kilometer = 1,000 meters

Now convert the meters to kilometers

To convert it to kilometers you divide 4,000 by 1,000, which equals 4 kilometers.

So she runs 4 kilometers each day.

Now divide 12 by 4 to find out how many days it will take to run 12 kilometers.

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