What is greatest to least 1.001,1.1,1.403,1.078

Answers

Answer 1
Answer: 1.403, 1.1, 1.078, 1.001
Answer 2
Answer: From greatest to least, 1.403, 1.1, 1.078, 1.001This can be seen easier by putting zeros at the end of some numbers, but you don't have to. Example: 1.403, 1.100, 1.078, 1.001

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Divide 7/24 by 35/48 and reduce the quotient to the lowest fraction. A. 245/1152 B. 2/5 C. 4/10 D. 42/48
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Which choice is the explicit formula for the following geometric sequence

Credit discount definition

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Hi There! :)

Credit discount definition?

to leave out of account as being unreliable, prejudiced, or irrelevant  

Which of the following can be used to prove that triangle EFG is also a right triangle?

Answers

I need a picture to solve this problem...

This problem is kinda hard can you help me

Answers

Answer:

B - 5

Step-by-step explanation:

K: 60

M: 60 x 25%; 60 x .25 = 75

K: 1500/60 = 25

M: 1500/75 = 20

25-20=5

Amy looks up to the 8-foot basketball hoop as shown. If the vertical distance from the ground to Amy’s eyes is 5.9 feet, what is the angle of elevation from Amy to the hoop? Round the answer to the nearest tenth.

Answers

To answer this question, you need to have an idea about how to handle trigonometric equations, sin, cos and tan

Amy looks up to the 8-foot basketball
8 feet - 5.9 feet = 2.1
= 2.1 inverse tan (2.1 / 22)
= 5.4526

Elevation to the nearest tenth = 5.5 feet

Answer:

A.

Step-by-step explanation:

Gabriel is at the grocery store, and wants to figure out his total cost before he gets to the register. He bought 2.5 pounds of apples that are x dollars a pound and 2 bags of lettuce for y dollars each. Gabriel remembers he has a coupon for $2 off his bill. Which expression gives the new amount he will pay?

Answers

The expression that gives the new amount he will pay from the purchase that Gabriel made at the grocery store  is 2.5x + 2y - $2

What are word problems?

Word problems in mathematics involve a careful understanding and interpretation of the variables given. This is because it is from these variables we will compute an equation to solve the word problem.

In this question, we are being told that:

  • Gabriel bought 2.5 pounds of apples at x dollars.
  • He also bought 2 bags of lettuce at y dollars.

So, the total amount of apples and lettuce bought is:

Total amount to be paid = 2.5x + 2y.

However, he had a coupon for $2 off his total bills. It implies the new amount he will pay will be:

New amount = 2.5x + 2y - $2

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Answer:

D is the answer.

Step-by-step explanation:

2y + 2.5x-2

At LaGuardia Airport for a certain nightly flight, the probability that it will rain is 0.19 and the probability that the flight will be delayed is 0.15. The probability that it will not rain and the flight will leave on time is 0.74. What is the probability that the flight would be delayed when it is not raining? Round your answer to the nearest thousandth.

Answers

The probability that the flight would be delayed when it is not raining is 12.15%.

Since at LaGuardia Airport, for a certain nightly flight, the probability that it will rain is 0.19 and the probability that the flight will be delayed is 0.15, while the probability that it will not rain and the flight will leave on time is 0.74 , to determine what is the probability that the flight would be delayed when it is not raining, the following calculation must be performed:

  • Probability that it will not rain = 1 - probability that it will rain
  • X = 1 - 0.19
  • X = 0.81

  • Probability that the flight would be delayed when it is not raining = probability that it is not raining x probability that the flight will be delayed
  • X = 0.81 x 0.15
  • X = 0.1215
  • 0.1215 x 100 = 12.15

Therefore, the probability that the flight would be delayed when it is not raining is 12.15%.

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Final answer:

To find the probability that the flight would be delayed when it is not raining, we can use conditional probability. The probability that the flight will be delayed given that it is not raining can be calculated using the formula: P(delayed | not raining) = P(delayed and not raining) / P(not raining). We are given the values for these probabilities and can calculate the answer as approximately 0.914.

Explanation:

To find the probability that the flight would be delayed when it is not raining, we can use conditional probability. The probability that the flight will be delayed given that it is not raining can be calculated using the formula:
P(delayed | not raining) = P(delayed and not raining) / P(not raining)
We are given that P(delayed and not raining) = 0.74 and P(not raining) = 1 - 0.19 = 0.81. Substituting these values into the formula:
P(delayed | not raining) = 0.74 / 0.81 ≈ 0.914. Therefore, the probability that the flight would be delayed when it is not raining is approximately 0.914.

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