They will need 4 buses.
The division in mathematics is one kind of operation. In this process, we split the expressions or numbers into the same number of parts.
Given:
For the class field trip,
the fourth grades at Jefferson Elementary School need to take buses.
Each bus fits 55 students,
and there are 200 students in fourth grade.
The number of buses,
= 200/55
= 3.63
≈ 4.
Therefore, the need is for 4 buses.
To learn more about the division;
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Answer:
167
Step-by-step explanation:
Answer:
c and d
Step-by-step explanation:
The cost inequalities tell you that x corresponds to bicycles, so answer (a) is incorrect. The cost constraint is strictly less than, so answer (b) is incorrect.
(c) correctly expresses the cost constraint.
(d) correctly expresses the relationship between bicycles (x) and treadmills (y).
_____
The only integer solution is y=0 and 0 < x ≤ 15.
Answer: c.
d.
Step-by-step explanation:
Let x be the number of new bicycles and y be the number of new treadmills.
Given : The number of new bicycles must be more than 13 times the number of new treadmills.
i.e.
Each bicycle costs $340 and each treadmill costs $670.
He must spend less than $5,650.
i.e. '
Hence, the constraints for this situation will be :
Hence, c and d are the correct options.
Pls answer this I need the answer now you’ll get 35 points
Answer:
yeah ^
Step-by-step explanation:
Answer:
The answer is 5.8 times a second
Step-by-step explanation:
Divide 1044 by 180 (The number of seconds in 3 minutes)
To calculate the rate in revolutions per second, we first convert the 3 minutes into seconds, which is 180 seconds. We then divide the total number of revolutions, 1044, by 180. This gives us a rate of 5.8 revolutions per second.
To solve this problem, we need to convert minutes into seconds because the rate is asked in revolutions per second.
Let's start by figuring out how many seconds are in those 3 minutes. We know that in 1 minute, there are 60 seconds. So, 3 minutes would be 3 times 60, which is 180 seconds.
Next, we will calculate the rate by dividing the total number of revolutions, which is 1044, by the total number of seconds, which is 180. So, 1044 ÷ 180 = 5.8.
This means that the propeller spins at a rate of 5.8 revolutions per second.
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