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Nostrana [21]
3 years ago
11

Kite activity please help

Mathematics
1 answer:
Nataly_w [17]3 years ago
7 0
Answer: a=95.5
b=95.5
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A section of a tessellated plane is shown. Which type of symmetry does the tessellated plane have?
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It has rotational symmetry of order 3 about the centroid of any triangle. Turning the pattern 120° gives you the same pattern.

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3 years ago
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Show work for an opportunity to receive partial credit. Find the value of x.<br> 12 = - 4-6x-3)
masya89 [10]

Answer:

I will gladly let you have partial credit! I am putting two different ones because  I am not sure why the parenthesis is at the end. Just pick whichever one looks like the question you have. Hope this helps!

Step-by-step explanation:

  • 12 = -4-6x-3
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Que es el factor literal
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Step-by-step explanation:

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3 years ago
Which facts are true for the graph of the function below? Check all that apply.
Murljashka [212]

Answer:  A: the range of F(x) isY>0  C : The y-intercept is (0,1)  E. It is decreasing.


Step-by-step explanation:


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4 years ago
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The estimated probability of a football player scoring a touchdown during a particular game is 39%. Of several simulations of th
VLD [36.1K]

Answer:

The percentage of the simulations of two games that the football player would most likely get a touchdown in each of the two games = 15.21%

Step-by-step explanation:

The probability of scoring a touchdown in one game for the football player = 39% = 0.39

Probability of scoring a touchdown in each of the two consecutive games = (Probability of scoring a touchdown in the first game) × (Probability of scoring a touchdown in the second game)

Since the probability of scoring a touchdown in each game the football player plays in is independent of one another.

Probability of scoring a touchdown in the first game = Probability of scoring a touchdown in the second game = 0.39

Probability of scoring a touchdown in each of the two consecutive games = 0.39 × 0.39 = 0.1521

If 100 simulations of the two games are made, the player scores in each of the two games in 15.21 of them, hence, the percentage of the simulations that the football player would most likely get a touchdown in each of the two games = 15.21%

Hope this Helps!!

4 0
4 years ago
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