If the toy car is on a smooth surface, there is less friction. Therefore, the car will most likely go faster. On the other hand, if the car is on a bumpy surface, there is plenty of friction. Therefore, the car will most likely go slower and stop at a shorter distance.
The friction between the tires and the road surface is what prevents a car from skidding. This friction helps to maintain traction and control between the tires and the road, allowing the driver to steer and brake effectively. Factors such as tire quality, road conditions, and driving speed can all affect the amount of friction available to prevent skidding.
No, the weight equation only accounts for the gravitational force acting vertically on an object. To determine the force on a car being moved sideways, you would need to consider additional factors such as friction, acceleration, and the angle of the inclined plane if applicable.
Velocity affects a mousetrap car by determining how fast the car can travel. A higher velocity means the car can cover more distance in a shorter amount of time. Factors like tire size, weight distribution, and surface friction can influence the velocity of a mousetrap car.
The speed of a rolling car is affected by factors such as the incline of the road, the weight of the car, the condition of the tires, and the force applied to propel the car forward. Friction with the road surface and air resistance also impact the speed of a rolling car.
You need to decide what features to put on the car. Then determine the prices and who you will sell it to.
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.
Mass (and weight) certainly does have an impact. Other factors that come into play are how much energy the engine exerts (a toy car with an engine that exerts the same amount of energy as a more massive toy car can travel faster on the same surface) and how much friction is generated by the wheels and the surface the toy car is traveling on. If the (toy) car is going down a ramp,if you add say another two or so grams, the car will travel faster
Many things could determind the amount of a quote. Exterior condition, interior condition, number of wrecks, and routine maintenance are all factors. However, mileage is probably the biggest factor when getting a quote for a used car.
A good friction for your car would typically fall within the manufacturer's recommended range, which can vary depending on the specific tire type and driving conditions. It's important to consult your car's manual or a professional to determine the optimal friction for your vehicle.
The simple answer is friction. Spinning tires are coming into contact with the road. The road's surface is not perfectly smooth -- it has a certain amount of roughness so the tires can grip and propel the car forward. Any time you have friction between two surfaces, and one of those surfaces moves to overcome that friction, a certain amount of energy from the process is lost as heat.
Depend entirely on the amount of power and friction.