Electrical energy is transformed into mechanical energy when a blender is turned on. The electrical energy from the outlet powers the motor in the blender, which then converts that energy into the rotation of the blades to blend the ingredients.
When a battery-operated flashlight is turned on, the chemical energy stored in the battery is converted into electrical energy, which powers the light bulb, producing light energy and heat energy.
The electrical energy from the power source is transformed into light energy by the chandelier's bulbs when the switch is turned on, illuminating the ballroom.
In class, I observed the transformation of electrical energy into light energy when we turned on a light bulb. The electrical energy from the power source is converted into light energy and heat energy by the filament inside the bulb, allowing us to see and illuminate our surroundings.
The energy transformation in a flashlight occurs inside the bulb when electricity is converted into light and heat energy. The battery provides electrical energy to power the light bulb, which then produces light and heat as a result.
Electrical energy is transformed into mechanical energy when a blender is turned on. The electrical energy from the outlet powers the motor in the blender, which then converts that energy into the rotation of the blades to blend the ingredients.
When a battery-operated flashlight is turned on, the chemical energy stored in the battery is converted into electrical energy, which powers the light bulb, producing light energy and heat energy.
The electrical energy from the power source is transformed into light energy by the chandelier's bulbs when the switch is turned on, illuminating the ballroom.
electrical energy
In class, I observed the transformation of electrical energy into light energy when we turned on a light bulb. The electrical energy from the power source is converted into light energy and heat energy by the filament inside the bulb, allowing us to see and illuminate our surroundings.
The energy transformation in a flashlight occurs inside the bulb when electricity is converted into light and heat energy. The battery provides electrical energy to power the light bulb, which then produces light and heat as a result.
A hair straightener transforms electrical energy into thermal energy. When the hair straightener is plugged in and turned on, electrical energy flows through the device, which is then converted into heat that is used to straighten the hair strands, resulting in the transformation of energy from one form to another.
When a light bulb is turned on, electrical energy is transformed into light and heat energy.
In a solar panel flashlight, the energy transformation involves converting solar energy into electrical energy. The solar panel captures sunlight and converts it into electricity, which is then stored in a rechargeable battery in the flashlight for later use. When the flashlight is turned on, the electrical energy stored in the battery powers the light source.
Electricity is transformed into light and heat energy when a light bulb is turned on. The electrical energy is used to heat up the filament in the bulb, causing it to glow and emit light. Some of the electrical energy is also converted to heat energy due to resistance in the filament.
In a battery-operated radio, electrical potential energy from the battery is converted into electromagnetic energy in the form of radio waves and sound energy when the radio is turned on and emits sound.
When a battery-operated device is turned on, the chemical energy stored in the battery is converted into electrical energy. The electrical energy is then used to power the device, producing other forms of energy like light, heat, or motion depending on the device's function.