If the surface is rough/bumpy , the vehicle cant safely go as fast as it can on a smooth road. Also if the car is bouncing, it's aerodynamics will be disturbed causing more drag. Ground clearance also has to be increased on rough roads, causing more drag.
The factors that can affect the friction of a car while driving include the type and condition of the tires, the road surface, the weight of the car, and the speed at which the car is traveling.
The cross sectional area of a car is dependent on its height. As the area changes the drag on the car, it is likely that increasing the height of a car will also reduce its top speed. There are many other factors that affect a car's maximum speed so a change in height may not always result in a change in top speed.
The slope of a surface can affect a car's speed by influencing the force of gravity acting on the car. Going uphill will slow the car down as gravity works against the car's forward motion, while going downhill will speed the car up as gravity provides additional force in the direction of motion. Overall, steeper slopes will have a greater impact on the car's speed than gentle slopes.
To determine how fast a toy car will travel across different surfaces, you can conduct experiments by measuring the time it takes for the car to travel a certain distance on each surface. Calculate the speed by dividing the distance by the time. Factors such as friction, surface texture, and incline will affect the speed of the toy car on different surfaces.
The two types of friction that affect a mousetrap car are rolling friction, which occurs between the wheels and the surface of the ground, and sliding friction, which occurs between the axles and the wheels. Both types of friction can reduce the overall efficiency and speed of the mousetrap car.
The factors that can affect the friction of a car while driving include the type and condition of the tires, the road surface, the weight of the car, and the speed at which the car is traveling.
The placement wouldn't affect the speed, but would affect the handling.
Aerodynamics of the car, power of the engine, the dimensions of the tyres, ride height, road surface and even the quality of the fuel in the tank.
It would affect its speed because the weight of the car is gonna slow it down
The cross sectional area of a car is dependent on its height. As the area changes the drag on the car, it is likely that increasing the height of a car will also reduce its top speed. There are many other factors that affect a car's maximum speed so a change in height may not always result in a change in top speed.
The slope of a surface can affect a car's speed by influencing the force of gravity acting on the car. Going uphill will slow the car down as gravity works against the car's forward motion, while going downhill will speed the car up as gravity provides additional force in the direction of motion. Overall, steeper slopes will have a greater impact on the car's speed than gentle slopes.
Weight
no
Things that affect braking distance consist of the following factors: * speed at which you're travelling * weight of the car * road conditions * braking efficiency * friction between the road surface and your tires Things that affect braking distance consist of the following factors: * speed at which you're travelling * weight of the car * road conditions * braking efficiency * friction between the road surface and your tires
Aerodynamics, weight of the car, horsepower of the engine, are all factors in the speed the car can travel.
yes because the smoother the surface is, the lower the friction ( the force that makes an object stop from a movement ) therefore, according to my science textbook; the rough textures have more friction and so, the texture of ramp does affect the speed of a toy car.
The more weight the car has the slower it goes.