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a subway car travels at a rate of 32 meters per second. how far does it travel in 16 seconds? use d = r + t.

2 Answers

8 votes

Answer:

512 meters

Explanation:

The formula for distance, velocity, and time is given by d = r × t, where d is the distance traveled, r is the rate of velocity, and t is the time elapsed.

Given that the subway car travels at a rate of 32 meters per second, the distance traveled in 16 seconds can be found as follows:


\sf:\implies{distance = 32 * 16}


\sf:\implies{distance = 512} \: meters

Therefore, the subway car travels 512 meters in 16 seconds.

User Michael Bissell
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Introduction

Hello! I hope you are having a nice day. My name is Galaxy and I will be helping you today!

We can solve this problem in two steps, one being the Formula / Theory and another being Solving.

If you do have any questions, feel free to ask them in the comments and I'll happily answer them. I'll start off with the Formula section now.

Formula

The formula for finding the distance can be solving using the formula
d=rt in which
d is the distance,
r is the rate, and
t is the time.

The formula is used a lot in Science and Physics and is a formula that is worth remembering.

Solving

Since we know the rate, which is 32 and we know that the time is 16 seconds, we can use our formula and begin to solve it.

I'll do everything line by line with an explanation to make it easier to understand.

1. Substitution

We can substitute our values into our equation to make it solvable.


d= 32(m)/(s)*16(s)/(1)

2. Simplification

We can now make the problem easier for us by using Unit Analysis, this will make it so that we can make the units make sense for us and this is used to make proper equations.


d=(32*16) * ((m)/(s) *(s)/(1))

Notice how we've separated the units to make it easier to interpret.

We can now cancel out the bottom seconds from meters over seconds to get our unit of meters.


d=(32*16) * ((m)/(1))\\d=512m

After solving, we get our final answer of 512 meters in 16 seconds.

Have a nice day!

-Galaxy

User Complexity
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