When a match is struck against the side of a matchbox and bursts into flames, the energy transformation that takes place is from mechanical energy (friction between the match and the matchbox) to heat energy. The friction generates enough heat to ignite the match head, causing it to catch fire and release energy in the form of light and heat.
When a match is struck against the side of a matchbox, mechanical energy is converted into thermal energy due to friction. The heat generated from the friction causes the match head to ignite and start the chemical reaction, releasing more energy in the form of light and heat.
In a campfire, chemical energy stored in the wood is converted into heat and light energy through the process of combustion. The heat energy radiates outward and warms the surroundings, while the light energy is emitted as visible light and flames.
Friction between the match head and the rough surface of the matchbox causes the match head to heat up, converting mechanical energy into thermal energy. This increase in temperature eventually ignites the match head, producing light and heat energy in the form of a flame.
Well the energy transformation that takes place when wood is burned is CHEMICAL ENERGY---> THERMAL ENERGY.
Some elements produce colorful flames because when they are heated, the electrons in their atoms become excited and jump to higher energy levels. When these electrons return to their original energy levels, they release energy in the form of light, creating the colorful flames.
When a match is struck against the side of a matchbox, mechanical energy is converted into thermal energy due to friction. The heat generated from the friction causes the match head to ignite and start the chemical reaction, releasing more energy in the form of light and heat.
In a campfire, chemical energy stored in the wood is converted into heat and light energy through the process of combustion. The heat energy radiates outward and warms the surroundings, while the light energy is emitted as visible light and flames.
Friction between the match head and the rough surface of the matchbox causes the match head to heat up, converting mechanical energy into thermal energy. This increase in temperature eventually ignites the match head, producing light and heat energy in the form of a flame.
Well the energy transformation that takes place when wood is burned is CHEMICAL ENERGY---> THERMAL ENERGY.
Some elements produce colorful flames because when they are heated, the electrons in their atoms become excited and jump to higher energy levels. When these electrons return to their original energy levels, they release energy in the form of light, creating the colorful flames.
Calgary Flames
A candle has thermal energy because of it flames, the flames have heat and thermal energy is heat.
In a campfire, chemical energy stored in the wood is converted into heat and light energy through the process of combustion. The heat produced from the fire can be used for warmth or cooking, while the light energy is visible as the flames.
ligth and nuclear
The Montreal Canadiens in 1989.
Calgary Flames
Calgary Flames.