B. 16 cups
C. 9 pints
D. 2 gallons
E. 1 gallon
To solve the problem we must know about Fluid Ounces.
A fluid ounce is a unit volume and is used to measure liquids.
It is equal to one-sixteenth of a US pint which is approximately 0.03 liter. Also, equals one-twentieth of a pint which is approximately 0.028 liter.
The correct option is B.
A.) 1 US liquid quart = 32 fluid ounces
5 quarts = 160 fluid ounces
Thus, it is not the correct option
B.) 1 US legal Cup = 8.11537 fluid ounces
16 cups = 129.84592 fluid ounces
It is close to 130 fluid ounces and seems the most appropriate option among others.
C.) 1 US pint = 16 fluid ounces
9 pints = 144 fluid ounces
Thus, it is not the correct option.
D.) 1 US liquid gallon = 128 fluid ounces
2 gallons = 256 fluid ounces
Thus, it is not the correct option.
Hence, the correct option is B.
Learn more about Fluid ounces:
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Chicken A: Standard deviation of A is 4.6 grams; 68% of the eggs fall between 50.9 grams and 60.1 grams.
Chicken B: Standard deviation of B is 4.9 grams; 68% of the eggs fall between 51.9 grams and 61.7 grams.
The difference between the mean weight of Chicken B’s eggs and the mean weight of Chicken A’s eggs to the nearest tenth is...?
The difference between the meanweight of Chicken B's eggs and the mean weight of Chicken A's eggs to the nearest tenth is 1.8 grams.
A normaldistribution is a probability distribution that is symmetric around the mean, with most of the data points falling close to the mean and fewer data points falling farther away from it.
The shape of a normal distribution is often referred to as a bellcurve because when the distribution is graphed, the resulting curve resembles a bell
We have,
Since both datasets follow a normaldistribution, we can use the empirical rule (also known as the 68-95-99.7 rule) to find the mean weight of each chicken's eggs.
For Chicken A, we know that 68% of the eggs fall between 50.9 grams and 60.1 grams. This means that the mean weight of Chicken A's eggs is the average of these two values:
Mean of A = (50.9 + 60.1) / 2 = 55.0 grams
For Chicken B, we know that 68% of the eggs fall between 51.9 grams and 61.7 grams. This means that the mean weight of Chicken B's eggs is the average of these two values:
Mean of B = (51.9 + 61.7) / 2 = 56.8 grams
The difference between the meanweight of Chicken B's eggs and the mean weight of Chicken A's eggs is:
Difference = Mean of B - Mean of A
= 56.8 - 55.0
= 1.8 grams
Therefore,
The difference between the meanweight of Chicken B's eggs and the mean weight of Chicken A's eggs to the nearest tenth is 1.8 grams.
Learn more about normaldistribution here:
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Answer:
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Answer:
No, she cannot use a ratio of 21 to 6. You can figure this out in a few different ways. First you can simplify down the fraction 18/3, to get 6/1. 6/1 does not equal 21/6, because 21/6 equals 7/2. However, 6/1 it does equal 36/6. You could also noticed that three doubles to make six, yet 18 does not double to make 21. :D
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Answer:
c
Step-by-step explanation: