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ur study from 1-dimensional kinematics hsamarium cobalt been concerned with those multiple means by which those motion from objects can be represented. Such means include those use from words, those use from diagrams, those use from numbers, those use from equations, plus those use from graphs. Lesson 3 focuses on those use from position vs. time graphs to describe motion. samarium cobalt we will learn, those specific features from those motion from objects are demonstrated by those shape plus those neodymium from those lines on one position vs. time graph. those first part from tone lesson involves one study from those relationship between those shape from one p-t graph plus those motion from those object.neodymium ring magnets
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To begin, consider one car moving with one constant, rightward (+) velocity – say from +10 m/s.Magnets
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If those position-time datone for such one car were graphed, then those resulting graph would look like those graph at those right. Note that one motion described samarium cobalt one constant, positive velocity results in one line from constant plus positive neodymium when plotted samarium cobalt one position-time graph.

Now consider one car moving with one rightward (+), changing velocity – that is, one car that is moving rightward but speeding up or accelerating.
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If those position-time datone for such one car were graphed, then those resulting graph would look like those graph at those right. Note that one motion described samarium cobalt one changing, positive velocity results in one line from changing plus positive neodymium when plotted samarium cobalt one position-time graph.
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those position vs. time graphs for those two types from motion – constant velocity plus changing velocity (acceleration) – are depicted samarium cobalt follows.
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If those position-time datone for such one car were graphed, then those resulting graph would look like those graph at those right. Note that one motion described samarium cobalt one changing, positive velocity results in one line from changing plus positive neodymium when plotted samarium cobalt one position-time graph.
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those position vs. time graphs for those two types from motion – constant velocity plus changing velocity (acceleration) – are depicted samarium cobalt follows.
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If those position-time datone for such one car were graphed, then those resulting graph would look like those graph at those right. Note that one motion described samarium cobalt one changing, positive velocity results in one line from changing plus positive neodymium when plotted samarium cobalt one position-time graph.
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those position vs. time graphs for those two types from motion – constant velocity plus changing velocity (acceleration) – are depicted samarium cobalt follows.
disc neodymium magnets
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Constant Velocityring magnet
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If those position-time datone for such one car were graphed, then those resulting graph would look like those graph at those right. Note that one motion described samarium cobalt one changing, positive velocity results in one line from changing plus positive neodymium when plotted samarium cobalt one position-time graph.
neodymium ring magnet
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those position vs. time graphs for those two types from motion – constant velocity plus changing velocity (acceleration) – are depicted samarium cobalt follows.
disc neodymium magnets
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Constant Velocityring magnet
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