Newton's Second Law - Proportionality & Relationships Exercise

Newton's Second Law - Proportionality & Relationships

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Newton's Second Law - Proportionality & Relationships

In this interactive exercise, students will explore the fascinating world of Newton's Second Law by conducting hands-on experiments to investigate how force, mass, and acceleration are interconnected; they will graph their findings to visually illustrate the proportional relationships, deepening their understanding of fundamental physics concepts.

Questions

  1. MultiChoice

    If force on an object is doubled while mass is kept constant, acceleration will:

  2. MultiChoice

    If the mass of an object is doubled while force remains constant, acceleration will:

  3. MultiChoice

    If both mass and net force are doubled at the same time, acceleration:

  4. MultiChoice

    A force F accelerates mass m at 4 m/s'. What acceleration results if force is tripled?

  5. MultiChoice

    Mass m accelerates at 10 m/s' under force F. If mass becomes 2m, new acceleration is:

  6. MultiChoice

    A box accelerates at 6 m/s'. If net force is cut in half, new acceleration is:

  7. MultiChoice

    An object accelerates at 2 m/s'. If mass is quadrupled (4m) with force unchanged, new acceleration is:

  8. MultiChoice

    If net force is quadrupled and mass is doubled, what happens to acceleration?

  9. MultiChoice

    An object has acceleration of 8 m/s'. If force is halved and mass is halved, new acceleration is:

  10. MultiChoice

    How much force is needed to give double the mass the same acceleration?

  11. MultiChoice

    If acceleration is 12 m/s' and mass is tripled while force stays constant, new acceleration is:

  12. MultiChoice

    To keep acceleration constant when mass increases by 5 times, how must net force change?