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Grace [21]
3 years ago
13

Got this so far, just need the answer to know if im correct

Mathematics
1 answer:
d1i1m1o1n [39]3 years ago
8 0

Answer:

that's not quadratic formula or square method

Step-by-step explanation:

i personally thing the quadratic formula is easier which is

x = -b+-√b^2 -4ac

----------------------------

2a

you just plug in a b and c into the equation which is

x^2 is a which is 1

-6x is b which is -6

1 is c and its just 1

the answer also needs to involve a radical which for example 3√2

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Answer:

2+2=4

Step-by-step explanation:

8 0
3 years ago
D. If the speed of a body is increased four times, how will its kinetic energy be affected?
const2013 [10]

Answer:

E

Step-by-step explanation:

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3 years ago
A chemical plant has an emergency alarm system. When an emergency situation exists, the alarm sounds with probability 0.95. When
Lapatulllka [165]

Answer:

6.56% probability that a real emergency situation exists.

Step-by-step explanation:

We have these following probabilities:

A 0.4% probability that a real emergency situation exists.

A 99.6% probability that a real emergency situation does not exist.

If an emergency situation exists, a 95% probability that the alarm sounds.

If an emergency situation does not exist, a 2% probability that the alarm sounds.

The problem can be formulated as the following question:

What is the probability of B happening, knowing that A has happened.

It can be calculated by the following formula

P = \frac{P(B).P(A/B)}{P(A)}

Where P(B) is the probability of B happening, P(A/B) is the probability of A happening knowing that B happened and P(A) is the probability of A happening.

In this problem:

What is the probability of a real emergency situation existing, given that the alarm has sounded.

P(B) is the probability of there being a real emergency situation. So P(B) = 0.004.

P(A/B) is the probability of the alarm sounding when there is a real emergency situation. So P(A/B) = 0.95.

P(A) is the probability of the alarm sounding. This is 95% of 0.4%(real emergency situation) and 2% of 99.6%(no real emergency situation). So

P(A) = 0.95*0.04 + 0.02*0.996 = 0.05792

Given that the alarm has just sounded, what is the probability that a real emergency situation exists?

P = \frac{P(B).P(A/B)}{P(A)} = \frac{0.004*0.95}{0.05792} = 0.0656

6.56% probability that a real emergency situation exists.

6 0
3 years ago
If you were to measure a person once a year, every year, from the ages of ten to twenty-five, would your ordered pairs of age an
Naily [24]
No they wouldn’t because height dosent work at a steady pace
4 0
4 years ago
Expand the logarithm fully using the properties of logs. Express the final answer in
Ivenika [448]

Answer:

<em>P=log(2)+log(3)+4.log(x)</em>

Step-by-step explanation:

To solve the problem, we need to recall the following properties of the logarithms:

log(x.y)=log(x)+log(y)

log(x^y)=y.log(x)

We have the expression:

P=log(6x^4)

Factor 6=2*3:

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Apply the property of the product:

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Now apply the property of the exponent:

P=log(2)+log(3)+4.log(x)

4 0
3 years ago
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