Answer:
C
Step-by-step explanation:
This is because since the inspector wants the golf balls he makes to make no more than .002 away from the standard diameter,
You would subtract x from the standard diameter in the absolute value symbols to represent the distance away from the ball subtracted or added from 42.67
Answer:
375 grams of soup sir I hope this helps
Tania has a total of 585 grams of soup before she warms it on the stove. This is found by adding the weight of all the ingredients she used: water (225g), condensed soup (300g), celery(50g), and carrots(10g).
The subject of this question is about adding quantities, which falls under Mathematics. Tania combines multiple ingredients to make soup. She uses 225 grams of water, 300 grams of condensed soup, 50 grams of celery and 10 grams of carrots. To find out the total amount of soup she has before warming it up, you simply need to add up all these amounts. So, 225g (water) + 300g (condensed soup) + 50g (celery) + 10g (carrots) = 585 grams. Therefore, Tania has 585 grams of soup before she warms it up on the stove.
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A.
81
B.
243
C.
486
D.
729
The probability that Mildred will select a dime first and then a month penny is 1/24.
Probability refers to potential. A random event's occurrence is the subject of this area of mathematics.
The range of the value is 0 to 1. Mathematics has incorporated probability to forecast the likelihood of various events.
The degree to which something is likely to happen is basically what probability means.
Given:
Total possibilities = 16
So, Probability of a dime of the first draw = 10/16 = 5/8
and, Probability of a penny on the second draw = 1/15
Thus, Probability of both = 5/8 x 1/15
= 1/24
Learn more about Probability here:
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Answer:
P(t)=185,000⋅(1718)^t2
Step-by-step explanation:
To model the population of foxes t months since the beginning of Alyssa's study, we can use the equation P(t) = P(0) - (1/18t), where P(0) is the initial population of 185,000 foxes.
To write a function that models the population of foxes t months since the beginning of Alyssa's study, we need to determine the rate at which the population decreases over time. Given that the population loses 1/18 of its size every 22 months, we can use this information to develop an equation. Let P(t) represent the population of foxes at time t, and let P(0) be the initial population of 185,000 foxes.
Since the population loses 1/18 of its size every 22 months, the rate of decrease can be calculated as 1/18 per 22 months. This can be written as -1/18 per month or -1/18t per month. Hence, the equation that models the population is P(t) = P(0) - (1/18t).