A car accelerates uniformly from rest to 60 m/s in 10 seconds. How far does it travel during this time, and what is its acceleration in m/s²?

["How Far Does a Car Accelerate Uniformly from Rest to 60 m/s in 10 Seconds?\nUnderstanding Uniform Acceleration with Real-World Physics", "When a car accelerates uniformly from rest to a final speed, calculating distance traveled and acceleration involves basic kinematic equations. This article explores a common scenario used in physics education: a car speeds up steadily from 0 m/s to 60 m/s in 10 seconds. We’ll determine both the distance covered and the car’s acceleration.", "---", "### Given:\n- Initial velocity, u = 0 m/s (starts from rest)\n- Final velocity, v = 60 m/s\n- Time, t = 10 s\n- Acceleration a is constant", "---", "### Step 1: Calculate Acceleration", "Using the formula for acceleration under uniform motion:\n[\na = \frac{v - u}{t}\n]\nSubstituting the known values:\n[\na = \frac{60\ \ ext{m/s} - 0\ \ ext{m/s}}{10\ \ ext{s}} = \frac{60}{10} = 6\ \ ext{m/s}^2\n]\nThe car accelerates at 6 m/s².", "---", "### Step 2: Calculate Distance Traveled", "To find how far the car travels during this 10-second interval with constant acceleration, use the kinematic equation for distance:\n[\ns = ut + \frac{1}{2} a t^2\n]\nSince u = 0, this simplifies to:\n[\ns = \frac{1}{2} a t^2\n]\nPlugging in the values:\n[\ns = \frac{1}{2} \ imes 6\ \ ext{m/s}^2 \ imes (10\ \ ext{s})^2 = 3 \ imes 100 = 300\ \ ext{meters}\n]\nThe car travels 300 meters in 10 seconds.", "---", "### Summary\n- Acceleration: 6 m/s²\n- Distance traveled: 300 meters", "This example illustrates how uniform acceleration enables predictable motion calculations essential in physics and everyday engineering — from cars to spacecraft. Knowledge of these principles helps students and drivers alike understand vehicle dynamics and optimize travel planning.", "---", "### Why This Matters\nUnderstanding uniform acceleration allows for accurate estimations in transportation, safety calculations, and speed-related metrics. Next time you see a vehicle accelerate smoothly, remember: it’s not magic — it’s physics in motion.", "---", "Keywords: acceleration physics, uniform acceleration, distance traveled in acceleration, kinematic equations, car acceleration 60 m/s in 10 s, how far does a car accelerate, acceleration m/s², physics problem solution."]









