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Aleks04 [339]
3 years ago
11

Is triangle XYZ = ABC ? If so, name the postulate that applies. A. Congruent - ASA B. Congruent - SAS C. Might not be congruent

D. Congruent - SSS
Mathematics
1 answer:
vladimir2022 [97]3 years ago
8 0

Answer:

Option D

Step-by-step explanation:

If two triangles are said to be congruent then they have exactly the same three sides and the same three angles.

Since the option D indicates that all the three sides are equal (represented as SSS), Hence, it is the right answer

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Which set contains rational numbers?
neonofarm [45]

Rational numbers are any numbers that terminate (the decimal ends somewhere)

The only set that does this is D, since

\sqrt{25}  = 5

All other sets have these:

\sqrt{47}  \:  \sqrt{7}  \: \pi

None of these terminate (the decimals goes on forever), so the answer is D

4 0
3 years ago
A recent study of th graders shows that they prefer social media or sports as a recreational activit
Ainat [17]

Answer:

1500

Step-by-step explanation:

2500/5=500,*3=1500

5 0
3 years ago
Find the percent of the discount when the original price is 79.75 andbthe sales price is 14.85
Neporo4naja [7]
Steps:
1. Do 79.75 minus 14.85 which is 64.9
2. 64.9 is how much the discount was
3. You do a proportion
X/100 times 64.9/79.75
4. 64.9 times 100= 6,490
5. 6,490 divided by 79.75 is 81.379
Your answer is
81.379%
6 0
3 years ago
Can the mean have a remainder?
Mazyrski [523]
Yes the mean can have a remainder but the remainder would normally be either rounded or converted into a fraction.
6 0
3 years ago
Benny is trying to learn how to ride a bike, but is terrified of falling. He did some research, and discovered that if he rides
Anestetic [448]

Answer:

a) 7.14% probability that Benny was learning to ride a bike using the training wheels

b) 28% probability that Benny was learning to ride a bike using the training wheels

Step-by-step explanation:

Bayes Theorem:

Two events, A and B.

P(B|A) = \frac{P(B)*P(A|B)}{P(A)}

In which P(B|A) is the probability of B happening when A has happened and P(A|B) is the probability of A happening when B has happened.

Benny came home crying with a bruise on his knee, after falling. His mom is trying to guess how Benny was trying to learn to ride a bike.

a) Assuming that the probability that Benny was using each of these 3 methods is equal, what is the probability that Benny was learning to ride a bike using the training wheels?

So

Event A: Benny fell

Event B: Benny was using training wheels.

The probability that Benny was using each of these 3 methods is equal

This means that P(B) = \frac{1}{3}

He did some research, and discovered that if he rides a bike with training wheels, the probability of falling is 0.1;

This means that P(A|B) = 0.1

Probability of falling:

1/3 of the time, he uses training wheels. With training wheels, the probability of falling is 0.1.

1/3 of the time, he uses the bike without training wheels. Without training wheels, the probability of falling is 0.5

1/3 of the time, he uses the unicycle, for which he has an 0.8 probability of falling. Then

P(A) = \frac{0.1 + 0.5 + 0.8}{3} = 0.4667

So

P(B|A) = \frac{\frac{1}{3}*0.1}{0.4667} = 0.0714

7.14% probability that Benny was learning to ride a bike using the training wheels

b) Since Benny's mom knows Benny so well, she knows that the probability that he was using training wheels is 0.7, regular bike is 0.2, and unicycle is 0.1. What is the probability now that Benny fell while using the training wheels?

Similar as above, just some probabilities change.

Event A: Benny fell

Event B: Benny was using training wheels.

The probability that he was using training wheels is 0.7

This means that P(B) = 0.7

He did some research, and discovered that if he rides a bike with training wheels, the probability of falling is 0.1;

This means that P(A|B) = 0.1

Probability of falling:

0.7 of the time, he uses training wheels. With training wheels, the probability of falling is 0.1.

0.2 of the time, he uses the bike without training wheels. Without training wheels, the probability of falling is 0.5

0.1 of the time, he uses the unicycle, for which he has an 0.8 probability of falling. Then

P(A) = 0.7*0.1 + 0.2*0.5 + 0.1*0.8 = 0.25

So

P(B|A) = \frac{0.7*0.1}{0.25} = 0.28

28% probability that Benny was learning to ride a bike using the training wheels

7 0
4 years ago
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