One-Dimensional Motion Fundamentals

Revision sheet excerpt

Chapter 2: Motion in One Dimension — Revision Sheet

1. 📌 Essentials

  • Motion along a straight line described by position, velocity, and acceleration.
  • Displacement (Δx\Delta x): change in position, a vector quantity.
  • Distance: total path length traveled, scalar.
  • Average velocity: vavg=ΔxΔt\displaystyle v_{avg} = \frac{\Delta x}{\Delta t}.
  • Instantaneous velocity: v(t)=dxdt\displaystyle v(t) = \frac{dx}{dt}.
  • Average acceleration: aavg=ΔvΔt\displaystyle a_{avg} = \frac{\Delta v}{\Delta t}.
  • Instantaneous acceleration: a(t)=dvdt\displaystyle a(t) = \frac{dv}{dt}.
  • Equations of motion (constant acceleration):
    • v=vi+at\displaystyle v = v_i + a t
    • x=xi+vit+12at2\displaystyle x = x_i + v_i t + \frac{1}{2} a t^2
    • v2=vi2+2a(xxi)\displaystyle v^2 = v_i^2 + 2 a (x - x_i)
  • Free fall: acceleration due to gravity, a=g=9.80m/s2a = -g = -9.80\, m/s^2.
  • At maximum height, vertical velocity is zero.
  • Symmetry in projectile motion: ascent time = descent time.

2. 🧩 Key Structures & Components

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Quiz preview

1. What is the primary focus of Chapter 2 in the motion course?

2. What is the formula for the displacement ($ riangle x$) in one-dimensional motion?

3. Which equation correctly relates the final velocity to initial velocity, acceleration, and time under constant acceleration?

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Flashcards preview

Position — definition?

Location relative to a reference point.

Displacement — definition?

Change in position; vector quantity.

Displacement — difference?

Change in position, includes direction.

Distance vs displacement — difference?

Distance: total path; Displacement: net change.

Velocity — formula?

Displacement over time, Δx/Δt.

Average velocity — formula?

Δx divided by Δt; vector.

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The quiz contains 10 multiple-choice questions with detailed corrections and explanations for each answer. Ideal for testing your knowledge and identifying gaps.

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