Leave m fixed at the zero mark the whole time. Move m to the 7.0 metre...
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Leave m fixed at the zero mark the whole time. Move m to the 7.0 metre mark. Observe the size and direction of both force arrows shown in the simulation. Now, still leaving m at the zero mark, move m to the 4.0 meter 1 mark. Again, observe the size and direction of the two force arrows. At the 4.0 meter mark, compare the force on my by m to the force on m by mj. ("Compare" means explain what is the same about the two forces, and also what is different about them). Which of Newton's Laws from the last unit can you use to explain your comparison? Explain what this law says and how it is linked to the comparison you made. Force on m1 by m2 = 9.53 10 N 01 Mass 1 100 kg Force on m2 by m1 = 9.53 10 N Mass 2 700 kg m2 NOUD Force Values O Decimal Notation Scientific Notation Hidden Constant Size Leave m fixed at the zero mark the whole time. Move m to the 7.0 metre mark. Observe the size and direction of both force arrows shown in the simulation. Now, still leaving m at the zero mark, move m to the 4.0 meter 1 mark. Again, observe the size and direction of the two force arrows. At the 4.0 meter mark, compare the force on my by m to the force on m by mj. ("Compare" means explain what is the same about the two forces, and also what is different about them). Which of Newton's Laws from the last unit can you use to explain your comparison? Explain what this law says and how it is linked to the comparison you made. Force on m1 by m2 = 9.53 10 N 01 Mass 1 100 kg Force on m2 by m1 = 9.53 10 N Mass 2 700 kg m2 NOUD Force Values O Decimal Notation Scientific Notation Hidden Constant Size
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Related Book For
Income Tax Fundamentals 2013
ISBN: 9781285586618
31st Edition
Authors: Gerald E. Whittenburg, Martha Altus Buller, Steven L Gill
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