The ratio of the distances travelled by a freely falling body in the and second:
The ratio of the distances travelled by a freely falling body in the and second:
Option 1 - <p><span class="mathml" contenteditable="false"> <math> <mn>1</mn> <mo>:</mo> <mn>2</mn> <mo>:</mo> <mn>3</mn> <mo>:</mo> <mn>4</mn> </math> </span></p>
Option 2 - <p><span class="mathml" contenteditable="false"> <math> <mn>1</mn> <mo>:</mo> <mn>4</mn> <mo>:</mo> <mn>9</mn> <mo>:</mo> <mn>16</mn> </math> </span></p>
Option 3 - <p><span class="mathml" contenteditable="false"> <math> <mn>1</mn> <mo>:</mo> <mn>3</mn> <mo>:</mo> <mn>5</mn> <mo>:</mo> <mn>7</mn> </math> </span></p>
Option 4 - <p><span class="mathml" contenteditable="false"> <math> <mn>1</mn> <mo>:</mo> <mn>1</mn> <mo>:</mo> <mn>1</mn> <mo>:</mo> <mn>1</mn> </math> </span></p>
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From A to B the process is isobaric

= W = 2 × R (600 - 350)
= 500 R
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Physics Motion in Straight Line 2025
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