asst 2 velocity

course Phy 121

zpآ蓏۵Xzw|assignment #002

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002. Velocity

Physics I

02-03-2007

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10:38:16

`q001. Note that there are 14 questions in this assignment.

If an object moves 12 meters in 4 seconds, then at what average rate is the object moving? Explain how you obtained your result in terms of commonsense images.

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RESPONSE -->

By dividing 12 meters by 4 seconds, you get an average rate of 3 meters/second.

confidence assessment: 3

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10:38:31

Moving 12 meters in 4 seconds, we move an average of 3 meters every second. We can imagine dividing up the 12 meters into four equal parts, one for each second. Each part will have 3 meters, corresponding to the distance moved in 1 second, on the average.

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RESPONSE -->

ok

self critique assessment: 3

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10:38:57

`q002. How is this problem related to the concept of a rate?

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RESPONSE -->

The rate of an object is how far an object moves in an amount of time, the rate of this object is that it moves 3 meters in one second.

confidence assessment: 2

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10:39:11

A rate is obtained by dividing the change in a quantity by the change in another quantity on which is dependent. In this case we divided the change in position by the time during which that change occurred.

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RESPONSE -->

ok

self critique assessment: 3

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10:39:47

`q003. Is object position dependent on time or is time dependent on object position?

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RESPONSE -->

Object position is dependent on time, because as the time changes, the object position is changed.

confidence assessment: 2

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10:40:21

Object position is dependent on time--the clock runs whether the object is moving or not so time is independent of position. Clock time is pretty much independent of anything else.

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RESPONSE -->

ok

self critique assessment: 3

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10:40:51

`q004. So the rate here is the average rate at which position is changing with respect to clock time. Explain what concepts, if any, you missed in your explanations.

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RESPONSE -->

One concept I missed at first is that time is independent of everything else.

confidence assessment: 3

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10:41:10

You should always self-critique your work in this manner. Always critique your solutions by describing any insights you had or errors you makde, and by explaining how you can make use of the insight or how you now know how to avoid certain errors. Also pose for the instructor any question or questions that you have related to the problem or series of problems.

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RESPONSE -->

ok

self critique assessment: 3

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10:41:43

`q005. If an object is displaced -6 meters in three seconds, then what is the average speed of the object what is its average velocity? Explain how you obtained your result in terms of commonsense images and ideas.

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RESPONSE -->

The speed of the object is found by dividing 6 meters by 3 seconds, to get a rate of 2 meters/second. The average velocity is found by dividing -6 meters by 3 seconds to get an average velocity of -2 meters/second.

confidence assessment: 2

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10:41:59

Speed is the average rate at which distance changes, and distance cannot be negative. Therefore speed cannot be negative. Velocity is the average rate at which position changes, and position changes can be positive or negative.

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RESPONSE -->

ok

self critique assessment: 3

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10:42:26

`q006. If `ds stands for the change in the position of an object and `dt for the time interval during which the position changes, then what expression stands for the average velocity vAve of the object during this time interval?

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RESPONSE -->

'vAve

confidence assessment: 1

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10:42:57

Average velocity is rate of change of position. Change in position is `ds and change in clock tim is `dt, so vAve = `ds / `dt.

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RESPONSE -->

By dividing the change in position by the change in time, this is the average velocity rate, and the expression for vAve is 'ds/'dt.

self critique assessment: 2

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10:43:16

`q007. How do you write the expressions `ds and `dt on your paper?

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RESPONSE -->

change in position / change in time

confidence assessment: 2

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10:43:34

You use the Greek capital Delta symbol Delta. `d is often used here because the symbol for Delta is not interpreted correctly by some Internet browsers. You should get in the habit of thinking and writing Delta when you see `d. You may use either `d or Delta when submitting work and answering questions.

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RESPONSE -->

I did not know that the Delta symbol and `d are interchangeable.

self critique assessment: 2

This is explained in the very first of the Introductory Problem Set problems. If you haven't seen that explanation, be sure to take a look.

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10:44:06

`q008. If an object changes position at an average rate of 5 meters/second for 10 seconds, then how far does it move?

How is this problem related to the concept of a rate?

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RESPONSE -->

By multiplying 5 meters/second by 10 seconds you get a distance of 50 meters. This object moves at a rate of 5 meters every second.

confidence assessment: 2

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10:44:48

In this problem you are given the rate at which position changes with respect to time, and you are given the time interval during which to calculate the change in position. Given the rate at which one quantity changes with respect to another, and the change in the second quantity, how do we obtain the resulting change in the first?

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RESPONSE -->

By measuring the change of the second quantity, you can find the resulting change in the first by comparing the rates of both quantities against each other.

self critique assessment: 2

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10:45:07

`q009. If vAve stands for the rate at which the position of the object changes (also called velocity) and `dt for the time interval during which the change in position is to be calculated, then how to we write the expression for the change `ds in the position?

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RESPONSE -->

vAve / `ds = `dt

confidence assessment: 1

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10:45:22

To find the change in a quantity we multiply the rate by the time interval during which the change occurs. We therefore obtain the change in position by multiplying the velocity by the time interval: `ds = vAve * `dt. The units of this calculation pretty much tell us what to do: Just as when we multiply pay rate by time (dollar / hr * hours of work) or automobile velocity by the time interval (miles / hour * hour), when we multiply vAve, in cm / sec or meters / sec or whatever, by `dt in seconds, we get displacement in cm or meters, or whatever, depending on the units of distance used.

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RESPONSE -->

I should have multiplied the rate by the time interval to find the change in position instead of dividing the velocity by the change in position.

self critique assessment: 2

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11:09:00

`q010. Explain how the quantities average velocity vAve, time interval `dt and displacement `ds are related by the definition of a rate, and how this relationship can be used to solve the current problem problem.

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RESPONSE -->

If you know the displacement of an object and the change in time interval, you can find the average velocity or rate by dividing the change in displacement by the time interval.

confidence assessment: 2

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11:09:16

vAve is the average rate at which position changes. The change in position is the displacement `ds, the change in clock time is `dt, so vAve = `ds / `dt.

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RESPONSE -->

ok

self critique assessment: 3

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11:26:19

`q011. The basic rate relationship vAve = `ds / `dt expresses the definition of average velocity vAve as the rate at which position s changes with respect to clock time t. What algebraic steps do we use to solve this equation for `ds, and what is our result?

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RESPONSE -->

By multiplying `dt and the vAve, you solve the equation for `ds.

confidence assessment: 1

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11:36:28

To solve vAve = `ds / `dt for `ds, we multiply both sides by `dt. The steps:

vAve = `ds / `dt. Multiply both sides by `dt:

vAve * `dt = `ds / `dt * `dt Since `dt / `dt = 1

vAve * `dt = `ds . Switching sides we have

`ds = vAve * `dt.

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RESPONSE -->

To solve the equation for `ds, I should have multiplied `dt to both sides to get = 1

self critique assessment: 2

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11:43:23

`q012. How is this result related to our intuition about the meanings of the terms average velocity, displacement and clock time?

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RESPONSE -->

If you know the time interval and the average velocity, you can multiply them and find the same answer if you do not know the change in position.

confidence assessment: 1

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11:44:00

Our most direct intuition about velocity probably comes from watching an automobile speedometer. We know that if we multiply our average velocity in mph by the duration `dt of the time interval during which we travel, we get the distance traveled in miles. From this we easily extend the idea. Whenever we multiply our average velocity by the duration of the time interval, we expect to obtain the displacement, or change in position, during that time interval.

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RESPONSE -->

ok

self critique assessment: 3

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11:46:44

`q013. What algebraic steps do we use to solve the equation vAve = `ds / `dt for `dt, and what is our result?

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RESPONSE -->

By dividing vAve with itself and dividing `ds by the vAve, you solve the equation for `dt.

confidence assessment: 2

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11:48:39

To solve vAve = `ds / `dt for `dt, we must get `dt out of the denominator. Thus we first multiply both sides by the denominator `dt. Then we can see where we are and takes the appropriate next that. The steps:

vAve = `ds / `dt. Multiply both sides by `dt:

vAve * `dt = `ds / `dt * `dt Since `dt / `dt = 1

vAve * `dt = `ds. We can now divide both sides by vAve to get `dt = `ds / vAve.

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RESPONSE -->

To solve the equation, I should have multiplied both sides of the equation by `dt as the first step.

self critique assessment: 2

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11:51:02

`q014. How is this result related to our intuition about the meanings of the terms average velocity, displacement and clock time?

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RESPONSE -->

If you only know the change in postion and the objects average velocity, you can find the clock time by dividing the change in position by the vAve.

confidence assessment: 3

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11:51:24

If we want to know how long it will take to make a trip at a certain speed, we know to divide the distance in miles by the speed in mph. If we divide the number of miles we need to travel by the number of miles we travel in hour, we get the number of hours required. We extend this to the general concept of dividing the displacement by the velocity to get the duration of the time interval.

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RESPONSE -->

ok

self critique assessment: 3

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I think you're in good shape here. Let me know if you have questions.