Energy from a car's gasoline is released through combustion in the engine's cylinders. When gasoline mixes with air and is ignited by a spark plug, it creates an explosive reaction that generates hot gases. These gases expand rapidly, pushing the pistons down, which converts the chemical energy of the gasoline into mechanical energy that powers the vehicle. This process is part of the internal combustion engine cycle, efficiently transforming fuel into motion.
Electric cars do not have a traditional internal combustion engine like gasoline cars. Instead, they have an electric motor powered by a battery. This motor converts electrical energy into mechanical energy to drive the car, making it more efficient and environmentally friendly compared to gasoline engines.
Gasoline is a Mechanical energy because gasoline can make cars move and cars are moving things.
The amount of work done on an automobile by its engine is directly related to the energy content of the gasoline used as fuel. Gasoline contains potential energy stored in its chemical bonds, which is released during combustion in the engine to produce work that moves the vehicle. The higher the energy content of the gasoline, the more work can be done by the engine.
Because it take energy to move a car and cars run on gasoline.
The engine runs on gasoline.
They can be electrical, diesel or gasoline
Cars need gasoline as a fuel to run. This compound is broken down into energy a car can use to run.
Gasoline has chemical energy, that is easily converted to thermal energy and then to mechanical energy(movement), which is used to propel the car.
Gasoline engine and battery pack.
Unburnt gasoline contains the potential energy to push your pistons and run your car.
chemical potential energy
In a gasoline engine, the correct energy conversion sequence is as follows: chemical energy in gasoline is converted to thermal energy through combustion in the engine cylinders, which then creates mechanical energy to drive the car via the pistons and crankshaft.