Kevin S. Huang

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Tag: Conservation of energy

  • 2024: Problem 25

  • 2024: Problem 20

  • 2024: Problem 14

  • 2024: Problem 6

  • 2023: Problem 25

  • 2023: Problem 21

  • 2023: Problem 11

  • 2022B: Problem 25

  • 2022B: Problem 24

  • 2022B: Problem 23

  • 2022A: Problem 14

  • 2022A: Problem 11

  • 2022A: Problem 10

  • 2022A: Problem 6

  • 2022A: Problem 4

  • 2022A: Problem 1

  • 2021: Problem 23

  • 2021: Problem 12

  • 2021: Problem 2

  • 2021: Problem 1

  • 2020B: Problem 17

  • 2020A: Problem 16

  • 2020A: Problem 1

  • 2019B: Problem 22

  • 2019B: Problem 21

  • 2019B: Problem 4

  • 2019A: Problem 18

  • 2019A: Problem 7

  • 2019A: Problem 4

  • 2019A: Problem 3

  • 2019A: Problem 2

  • 2018B: Problem 17

  • 2018B: Problem 9

  • 2018A: Problem 18

  • 2017: Problem 24

  • 2017: Problem 17

  • 2016: Problems 21-22

  • 2016: Problem 19

  • 2016: Problem 9

  • 2015: Problem 23

  • 2015: Problems 12-13

  • 2014: Problem 11

  • 2014: Problem 4

  • 2013: Problems 23-24

  • 2013: Problems 19-21

  • 2012: Problem 8

  • 2011: Problems 19-20

  • 2011: Problem 15

  • 2010: Problems 15-16

  • 2010: Problem 13

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1D elastic collision 1D inelastic collision 5 kinematics equations Angular kinematics Atwood machine Buoyant force Circular motion Circular orbits Conservation of angular momentum Conservation of energy Conservation of linear momentum Dimensional analysis Effective spring constant Elliptical orbits Energy dissipation Error propagation Fictitious forces Fma: Collisions Fma: Dynamics Fma: Energy Fma: Fluids Fma: Gravity Fma: Kinematics Fma: Oscillatory Motion Fma: Other Fma: Rigid Bodies Fma: System of Masses Forces in mechanics Free fall Inclined plane Kinetic energy Limiting cases Mass-spring system Moments of inertia Motion graphs Newton's laws Power Projectile motion Relative velocity Rolling motion Simple harmonic motion Statics Torque Torque from weight Work-energy theorem

Kevin S. Huang

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