About Course
The Scenario
You’ve just been hired as a junior civil engineer. Your team has been asked to design a curved section of highway that’s had one too many accidents in bad weather.
By the end, your team needs an answer to three things: how sharp this curve can safely be, what speed to post on the sign, and whether that changes when it rains. You’ll have to defend your recommendation with physics — not just hand over a number.
But before any of that, you need to understand something more basic: what actually happens to a car — and the people inside it — as it goes around a curve?
Watch the two videos below before you go any further.
[Video 1 — the road curve itself: establishes the real curve your team is working with]
[Video 2 — dashboard footage: driving in a straight line at different speeds, then around a circular path at different speeds]
Don’t take notes yet. Just watch.
Step 1 — Observe
Watch both videos again, and this time, pay attention to what you notice — not what you already know from a physics class.
- What felt different between driving in a straight line and driving through the curve?
- Was there a moment you’d describe as feeling “pushed” in some direction? When, exactly?
- Did that feeling change when the car sped up or slowed down through the curve?
- Is there anything visible in the video — something swinging, sliding, or shifting — that shows something happening, even in a moment where you personally wouldn’t have noticed it?
Before you move on: write down at least two questions this raised for you. Not answers — questions. What do you actually want to know about what’s going on here?
(The rest of the activity — and seven more like it in the full Mechanics, Motion and Energy Exploration — picks up from here.)
Course Content
Introduction
-
Straight Line
00:37 -
Circular Motion
00:00 -
Part 1 questions
