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juin [17]
3 years ago
6

an someone please help me: A football field measures 300 feet in length. It can also be expressed as approximately 5.7 times 10

Superscript n miles. If there are 5,280 feet in 1 mile, which is the most reasonable value of n?
Mathematics
2 answers:
bonufazy [111]3 years ago
8 0

Answer:

b i took the test that was the right answer

Step-by-step explanation:

telo118 [61]3 years ago
8 0

Answer:

b; -2 on edge

Step-by-step explanation:

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kendrey ran 9 miles in 1 hour and 30 minutes. how long will it take her to run 12 miles at this pace?
castortr0y [4]
Turn hours into minutes

1hr = 60mins

Add the 60mins with 30mins since it’s 1hr and 30 mins. Which will equal 90mins


9miles/ 90minutes

You can simplify
1 mile/ 10 mins
So for 1 mile it takes 10 mins

And the problem is asking how much will it take for her to run 12 miles

Meaning it will take 120 minutes for her to run 12 miles.
6 0
3 years ago
Sally prepaid 13 the price of a ticket to a concert. The amount she prepaid was $15.
jek_recluse [69]

Answer:

45 hope that answers your question

8 0
3 years ago
Read 2 more answers
Chris walked for 3 miles on his hike. How many feet did Chris walk on his hike? (1 mile = 5,280 feet) A. 1,760 feet B. 5,277 fee
Rudik [331]
3 x 5280 = 15840 feet

therefore the answer is 15840 feet (D) 
8 0
3 years ago
Read 2 more answers
Newton's Law of Cooling states that the rate of change of the temperature of an object, T, is proportional to the difference of
maria [59]

Answer:

  305 °F

Step-by-step explanation:

The core temperature of the object after 4 hours can be found using an exponential decay formula to model the decay of the difference between core temperature and ambient.

<h3>Cooling Model</h3>

The solution to the differential equation described by Newton's law of cooling is the exponential equation ...

  y = ab^t +c

where 'a' is the initial core temperature difference from ambient, 'b' is the decay factor of that difference in 1 unit of time period t. 'c' is the ambient temperature.

For this problem, the ambient temperature is c=80, and the differences of interest are ...

  a = 1200 -80 = 1120

  b = (830 -80)/1120 = 75/112

Using these values in the model gives ...

  y = 1120(75/112)^t +80 . . . . . . where y(t) is the core temperature at time t

Note that units of time are hours.

<h3>Application</h3>

We want y when t=4.

  y = 1120(75/112)^4 +80 ≈ 1120(0.20108) +80 ≈ 305.212

The core temperature after 4 hours is about 305 °F.

__

<em>Additional comment</em>

The differential equation will have a solution of the form ...

  T-T_R=(T_0-T_R)e^{kt}

where k = ln(75/112) ≈ -0.40101

In the above, we defined b = e^k = 75/112. Accuracy with this fraction can be better than using a truncated value of k.

5 0
2 years ago
Solve for x: [x - 2 + 10 = 12
Monica [59]

Answer:x-2+10=12

We move all terms to the left:

x-2+10-(12)=0

We add all the numbers together, and all the variables

x-4=0

We move all terms containing x to the left, all other terms to the right

x=4

Step-by-step explanation:

5 0
3 years ago
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