∫Calc Practice

Velocity, acceleration and speed in space

Problem 9.239 · medium

A particle has acceleration \( \displaystyle \mathbf a(t) = \left\langle 0, 0, -32 \right\rangle \), initial velocity \( \displaystyle \left\langle -3, 5, -2 \right\rangle \) and initial position \( \displaystyle \left\langle -2, -2, -2 \right\rangle \). Find \( \displaystyle \mathbf r(t) \).
  1. \[ \left[\begin{matrix}\frac{d}{d t} \left(-3\right)\\\frac{d}{d t} 5\\\frac{d}{d t} \left(- 32 t - 2\right)\end{matrix}\right] = \left[\begin{matrix}0\\0\\-32\end{matrix}\right] \]
    Integrating a and using v(0) gives v(t) = <-3, 5, -32*t - 2>.✓ Proved
  2. \[ \left[\begin{matrix}\frac{d}{d t} \left(- 3 t - 2\right)\\\frac{d}{d t} \left(5 t - 2\right)\\\frac{d}{d t} \left(- 16 t^{2} - 2 t - 2\right)\end{matrix}\right] = \left[\begin{matrix}-3\\5\\- 32 t - 2\end{matrix}\right] \]
    Integrate again and use r(0).✓ Proved
  3. \[ \left[\begin{matrix}-2\\-2\\-2\end{matrix}\right] \]
    r(0) is the given position.✓ Proved
Answer \( \mathbf r(t) = \left\langle - 3 t - 2, 5 t - 2, - 16 t^{2} - 2 t - 2 \right\rangle \)

✓ Nihil obstat Every line of this solution was proved by the computer algebra system SymPy. The answer was also checked a second way, without looking at the solution. Reviewers found nothing wrong with the explanation.

The full receipt
LineStatusChecked byDetail
1✓ Provedsympy 1.14.0simplify(lhs - rhs) reduced to 0
2✓ Provedsympy 1.14.0simplify(lhs - rhs) reduced to 0
3✓ Provedsympy 1.14.0simplify(lhs - rhs) reduced to 0
answer, a second way✓ Checked independentlysympy 1.14.0 + mpmath 1.3.0the motion integrated numerically from the initial conditions, compared at t = 1.5

Reviewers

  • gpt-oss:20b: pass
  • qwen3.6:27b-mlx: pass — The solution correctly integrates acceleration to find velocity and then position, applying initial conditions accurately. The final result matches the stated answer.
Every verdict on record (4)
  • qwen3.6:27b-mlx: pass 2026-10-04 — The solution correctly integrates acceleration to find velocity and then position, applying initial conditions accurately. The final result matches the stated answer.
  • gpt-oss:20b: pass 2026-10-04
  • qwen3.6:27b-mlx: pass 2026-10-04 — The solution correctly integrates the acceleration to find velocity and then position, applying the initial conditions accurately. The final result matches the stated answer.
  • gpt-oss:20b: pass 2026-10-04

Proved: SymPy reduced the difference between the two sides to zero. Checked independently: a separate method, named above, confirmed it. Checked numerically: the two sides agree at every sampled point, which is evidence, not proof. Reviewed: a model or a person read it; that is all a sentence can have. Solution by generator:structured/motion_in_space, checked 2026-10-04 with SymPy 1.14.0.