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Alisiya [41]
2 years ago
5

A triathlon includes a .5 km swim, 40 km bike, and a 10 km run. Mr. B completed the swim in 25 minutes and 10 seconds, and the b

ike ride in 1 hour, 30 minutes, and 50 seconds. If he wants to equal the triathlon record of 2 hours and 46 minutes, how fast must Mr. B run in meters per second?
Mathematics
1 answer:
Dmitry_Shevchenko [17]2 years ago
8 0

Answer:

3.33 meters per second

Step-by-step explanation:

you must find the total time that Mr. B spent to complete the swim and bike.

Information:

0h 25' 10'' ---------> Swim

1h 30' 50'' ---------> Bike

hours = 0 + 1 = 1\\minutes = 25+30 = 55\\seconds = 10+50=60\\

he spent 1h 55' 60'', this is 1h 56'.

now you must substract this time from the record time to find the time alloted to run:

first you convert both times into minutes:

record \ time = 2(60) + 46 = 166 \ minutes \ \ \ \ multiply \ hours \ by \ 60 \ minutes\\time\ swim \ and \ bike = 1(60) + 56 = 116 \ minutes\\

now substracting:

time \ to \ run \ = record \ time \ - \ time \ swim \ and \ bike\\time \ to \ run \ = 166 - 116 = 50 \ minutes

so he must travel 10 km in 50 minutes, that is:

speed = distance/time

speed = \frac{10}{50} \frac{km}{min}

1 km is equal to 1000 meters and 1 minute is equal to 60 seconds.

speed = \frac{(10)}{(50)}\frac{(1000) meters}{(60) sec}\\\\speed = \frac{(10000)}{(3000)}\frac{meters}{sec} \ \ \ \ \ \ \ \ \ multiply \\\\speed = 3.33 \ meters/sec

so Mr.B's speed must be 3.33 meters/sec

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Answer: The probability of a student scoring 75%, given that they have already scored  85% in class work is 1.


Step-by-step explanation: Given,

P(A)=0.64

and

P(B)=0.45.

Also,

If the student already scored 85%, the it is sure that he/she will definitely score 75%. Hence, the statement that the probability of a student scoring 75% in a class work, given that they already scored 85% is 1 is a true statement.

So, the second statement is true.



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For this case what you should know is that by definition the volume of the cone is given by:
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 Remembering that:
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 V = ((pi) * ((d / 2) ^ 2) * (h)) / (3)
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 V = 314.16 ft ^ 3
 Answer:
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The National Center for Education Statistics would like to test the hypothesis that the proportion of Bachelor's degrees that we
agasfer [191]

This question involves the hypothesis test for the proportion. First we build the hypothesis, then find the test statistic, and according to the test statistic, we get the following answer:

The conclusion for this hypothesis test would be that because the absolute value of the test statistic is less than the critical value of 1.645, we do not reject the null hypothesis that the proportion of Bachelor's degrees that were earned by women equals 0.60.

The National Center for Education Statistics would like to test the hypothesis that the proportion of Bachelor's degrees that were earned by women equals 0.60

This means that at the null hypothesis, it is tested if the proportion is of 0.6, that is:

H_0: p = 0.6

At the alternative hypothesis, we test if the proportion is different of 0.6, that is:

H_1: p \neq 0.6

Decision rule:

Two-tailed test(test if the proportion is different of a value), so we exclude the top and bottom 0.1/2 = 0.05, meaning that looking at the z-table, we find a critical value of |Z_c| = 1.645, and the decision rule is:

Accept the null hypothesis: |Z| < 1.645

Reject the null hypothesis: |Z| > 1.645

Test statistic:

z = \frac{X - \mu}{\frac{\sigma}{\sqrt{n}}}

In which X is the sample mean, \mu is the value tested at the null hypothesis, \sigma is the standard deviation and n is the size of the sample.

0.6 is tested at the null hypothesis:

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This means that:

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For a similar example, you can check brainly.com/question/24166849

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Step-by-step explanation:

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<u>See the attached figure.</u>

0.5 x + 5y = 6 ⇒ in black color

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