Sunday, July 12, 2026

Stopping Distance, Reaction Distance & Braking Distance Explained | NEET Physics Notes

- Dr Sanjay Kumar Pawar 

Reaction Distance, Braking Distance and Stopping Distance for NEET 

Educational diagram showing stopping distance, reaction distance, braking distance, reaction time, braking time, and stopping distance formula for NEET Physics.
Stopping distance consists of reaction distance and braking distance, an important concept in NEET Physics.


Internal Links

  1. Motion in One Dimension Notes
  2. Distance, Displacement and Speed
  3. Velocity and Acceleration Explained
  4. Equations of Motion (SUVAT Equations)
  5. Uniform and Non-uniform Motion
  6. Graphs of Motion (Distance-Time & Velocity-Time)
  7. Relative Motion Notes
  8. Newton's Laws of Motion
  9. Friction and Braking Force
  10. Work, Energy and Power
  11. Circular Motion
  12. NEET Physics Formula Sheet
  13. Top 100 NEET Physics MCQs
  14. Kinematics Practice Questions
  15. NEET Physics Revision Notes 
Stopping Distance Notes - NEET Physics

Stopping Distance (Reaction Distance + Braking Distance)

Definition

Stopping distance is the total distance travelled by a vehicle from the moment the driver notices an obstacle until the vehicle comes to complete rest.

Stopping Distance = Reaction Distance + Braking Distance
S = sr + sb

1. Reaction Distance (Thinking Distance)

Reaction distance is the distance travelled by the vehicle during the driver's reaction time before applying the brakes.

Reaction Time

Reaction time is the time taken by the driver from observing an obstacle to applying the brakes.

Generally, Reaction Time < 1 second

Formula

sr = u × tr

Where,

  • sr = Reaction Distance
  • u = Initial Velocity
  • tr = Reaction Time
During reaction time:
  • Brakes are not applied.
  • Velocity remains constant.
  • Acceleration = 0

2. Braking Distance

Braking distance is the distance travelled after applying the brakes until the vehicle comes to rest.

During braking,
  • Vehicle decelerates.
  • Final velocity becomes zero.

Formula

v² = u² − 2as
Since
v = 0
Therefore,
sb = u² / 2a
Where
  • sb = Braking Distance
  • a = Deceleration

3. Stopping Distance Formula

S = utr + u² / 2a
This is the most important formula for NEET examinations.

4. Safe Distance

Safe distance is the minimum distance required between two vehicles to avoid collision.

Safe Distance ≥ Stopping Distance

5. Difference Between Reaction Distance and Braking Distance

Reaction Distance Braking Distance
Before applying brakes After applying brakes
Velocity remains constant Velocity decreases
Acceleration = 0 Negative acceleration
Depends on reaction time Depends on braking force

6. Important NEET Points

  • Reaction distance depends on speed and reaction time.
  • Braking distance depends on speed².
  • If speed doubles, braking distance becomes four times.
  • Stopping distance = Reaction distance + Braking distance.
  • Reaction time is usually less than 1 second.

7. Formula Sheet

Reaction Distance = u × tr
Braking Distance = u² / 2a
Stopping Distance = utr + u² / 2a

8. Practice Questions

Q1. A car moves with speed 20 m/s. Reaction time is 0.5 s. Find the reaction distance.

Answer: 20 × 0.5 = 10 m
Q2. A vehicle moves at 30 m/s. Braking deceleration is 5 m/s². Find braking distance.
Answer: 30² / (2 × 5) = 900 /10 = 90 m
Q3. A car travels at 25 m/s. Reaction time = 0.8 s Deceleration = 5 m/s² Find stopping distance.
Reaction Distance = 25 × 0.8 = 20 m
Braking Distance = 25² /10 = 62.5 m
Stopping Distance = 20 + 62.5
= 82.5 m

9. Multiple Choice Questions

  1. During reaction time acceleration is
    • A. Positive
    • B. Negative
    • C. Zero ✔
    • D. Infinite
  2. Reaction distance depends upon
    • A. Speed
    • B. Reaction time
    • C. Both A and B ✔
    • D. Braking force
  3. Braking distance is proportional to
    • A. Speed
    • B. Speed² ✔
    • C. Time
    • D. Mass only
  4. Stopping distance equals
    • A. Reaction distance
    • B. Braking distance
    • C. Reaction distance + Braking distance ✔
    • D. None
  5. If speed doubles, braking distance becomes
    • A. Double
    • B. Half
    • C. Four Times ✔
    • D. Eight Times

10. One Minute Revision

✔ Reaction Distance = Before braking
✔ Braking Distance = After braking
✔ Stopping Distance = Reaction Distance + Braking Distance
✔ Reaction Distance = u × tr
✔ Braking Distance = u² / 2a
✔ Stopping Distance = utr + u² / 2a
✔ Braking Distance ∝ Speed²

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