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algol [13]
3 years ago
10

4x+1y=12 solve please need help

Mathematics
2 answers:
katovenus [111]3 years ago
3 0

Answer:

-0.25y

Step-by-step explanation:

Simplifying

4x + 1y = 12

Solving

4x + 1y = 12

Solving for variable 'x'.

Move all terms containing x to the left, all other terms to the right.

Add '-1y' to each side of the equation.

4x + 1y + -1y = 12 + -1y

Combine like terms: 1y + -1y = 0

4x + 0 = 12 + -1y

4x = 12 + -1y

Divide each side by '4'.

x = 3 + -0.25y

Simplifying

x = 3 + -0.25y

ira [324]3 years ago
3 0

Answer:

x = 3 + -0.25y

  • Step-by-step explanation: Simplifying:
  1. 4x + 1y = 12
  • Solving:
  1. 4x + 1y = 12
  • Solving for variable 'x'.:
  • Move all terms containing x to the left, all other terms to the right.
  • Add '-1y' to each side of the equation.
  • 4x + 1y + -1y = 12 + -1y
  • Combine like terms: 1y + -1y = 0
  • 4x + 0 = 12 + -1y
  • 4x = 12 + -1y
  • Divide each side by '4'.
  • x = 3 + -0.25y
  • Simplifying
  • x = 3 + -0.25y
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3 years ago
A power plant discharges water into a river. Regulators determine that as long as the mean temperature of the discharged water i
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Answer:

(A) Type I error in the context of this problem is chances of regulators believing that the mean temperature of the discharged water is more than 150°F but in actual the mean temperature of the discharged water was 150°F.

(B) Type II error in the context of this problem is chances of regulators believing that the mean temperature of the discharged water is no more than 150°F but in actual the mean temperature of the discharged water was more than 150°F.

(C) An environmental group will consider the Type II error more serious.

Step-by-step explanation:

We are given that a power plant discharges water into a river. Regulators determine that as long as the mean temperature of the discharged water is no more than 150°F, there will be no negative effects on the river’s ecosystem.

We are also given with the following hypothesis;

Null Hypothesis, H_0 : \mu = 150°F

Alternate Hypothesis, H_a : \mu > 150°F

(A) <u><em>Type I error</em></u><em> states that Probability of rejecting null hypothesis given the fact that null hypothesis was true or in other words Probability of rejecting a true hypothesis.</em>

So, Type I error in the context of this problem is chances of regulators believing that the mean temperature of the discharged water is more than 150°F but in actual the mean temperature of the discharged water was 150°F.

(B) <u><em>Type II error </em></u><em>states that Probability of accepting null hypothesis given the fact that null hypothesis was false or in other words Probability of accepting a false hypothesis.</em>

So, Type II error in the context of this problem is chances of regulators believing that the mean temperature of the discharged water is no more than 150°F but in actual the mean temperature of the discharged water was more than 150°F.

(C) An environmental group will consider the Type II error more serious because by committing Type II error they believe that the mean temperature of the discharged water is no more than 150°F and they assume that there is no negative effects on the river’s ecosystem but in reality that the mean temperature of the discharged water was more than 150°F and it is producing negative effects on the river’s ecosystem.

8 0
3 years ago
You just obtained a credit card. You immediately purchase a stereo system for $200. your credit limit is $1000. Let's assume tha
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Answer:

i think the answer is:

<u> B. 0.0142</u>

Step-by-step explanation:

7 0
3 years ago
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A. 1, 5, 10, 5, 1

Step-by-step explanation:

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The population of a town is 15,000. It decreases at a rate of 8% per year. In about how many years
Paha777 [63]

Answer:

5

Step-by-step explanation:

If a population is decreasing by 8% we can multiply the population by 92% (1-.08)

which means we have the following equation

population=15000(.92)ⁿ

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we want to know when the population will be 10,000 so we write

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a rule we have is

n=y^x\\log_yn=x

which means that

.66667=.92^n\\=log_{.92}.66667

compute this and get

4.867

round this up to 5

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