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LenaWriter [7]
4 years ago
12

Please help ASAP! I will mark Brainliest! Please answer CORRECTLY! No guessing!

Mathematics
2 answers:
Bas_tet [7]4 years ago
4 0
Bbbbb ite b itsbdbdksjbcnwkskdkannxjxksla
quester [9]4 years ago
3 0

Answer:

B

Step-by-step explanation:

Since the equation is all positive, the curve should concave towards the 4th quadrant.

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The length of a rectangle is 54cm it's breadth is 8cm what is it's perimeter ? what is it's area?​
il63 [147K]

Answer:

perimeter = 2(length + breadth) \\  =2 (54 + 8) \\  = 124 \: cm

7 0
3 years ago
The total mass of the Sun is about 2×10^30 kg, of which about 76 % was hydrogen when the Sun formed. However, only about 12 % of
nignag [31]

Answer:

A. 1.8 ×10^{30} Kg

B i. 3.0 × 10^{17} seconds

  ii. 9.6 × 10^{9} years

C. After 9.2 × 10^{9} (9.2 billion) years

Step-by-step explanation:

Given that the mass of the Sun = 2× 10^{30} Kg.

Mass of hydrogen when Sun was formed = 76% of 2× 10^{30} Kg

                            = \frac{76}{100}  ×2× 10^{30} Kg

                           = 1.52 × 10^{30} Kg

Mass of hydrogen available for fusion = 12% of 1.52 × 10^{30} Kg

                           = \frac{12}{100} × 1.52 × 10^{30} Kg

                           = 1.824 ×10^{30} Kg

A. Total mass of hydrogen available for fusion over the lifetime of the sun is 1.8 ×10^{30} Kg.

B. Given that the Sun fuses 6 × 10^{11} Kg of hydrogen each second.

i. The Sun's initial hydrogen would last;

                                     \frac{1.8*10^{30} }{6*10^{11} }

                                 = 3.04 × 10^{17} seconds

The Sun's hydrogen would last 3.0 × 10^{17} seconds

ii. Since there are 31536000 seconds in a year, then;

The Sun's initial hydrogen would last;

                                     \frac{3.04*10^{17} }{31536000}

                                 = 9.640 × 10^{9} years

The Sun's hydrogen would last 9.6 × 10^{9} years.

C. Given that our solar system is now about 4.6 × 10^{9} years, then;

                               \frac{9.6*10^{9} }{4.6*10^{9} }

                             = 2.09

So that;   2 × 4.6 × 10^{9} = 9.2 × 10^{9} years

Therefore, we need to worry about the Sun running out of hydrogen for fusion after 9.2 × 10^{9} years.

6 0
3 years ago
Help please I don’t know the answer
icang [17]

Answer:

$16,534.95

Step-by-step explanation:

To compute interest on loans, we use the compounded interest equation. We use the equation A=P(1+\frac{r}{n})^{nt} where

  • P is the principle or starting value
  • A is the total amount after interest and a period of time
  • r is the rate at which interest gathers as a decimal
  • t the time in years
  • n is the number of times compounded in a year.

For this problem, we know P=$8000, r=19%=0.19, t=4 years and n=2. We substitute into the formula and simplify to find the total amount A.

A=P(1+\frac{r}{n})^{nt}\\A=8000(1+\frac{0.19}{2})^{2(4)}\\A=8000(1+0.095)^{8}\\A=16,534.95



3 0
3 years ago
Given that ∠A and ∠B are linear pairs, if m∠A = 112° then what is m∠B?<br><br> Answer<br> Plz
egoroff_w [7]

Check the picture below.

7 0
3 years ago
If <br> f(x) = x2 + 2x + 9,<br> what is <br> f(x + 1)?
Ratling [72]

Answer:

<em>x² + 4x + 12</em><em> </em>

Step-by-step explanation:

f(x) = x² + 2x + 9

<em>f(x + 1)</em> = (x + 1)² + 2(x + 1) + 9 = x² + 2x + 1 + 2x + 2 + 9<em> = x² + 4x + 12</em>

8 0
3 years ago
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