Bipolar cells
The process of receiving and representing stimulus energies by the nervous system is called sensory transduction. This is where sensory receptors convert physical or chemical stimulus energy into electrical signals that can be transmitted and processed by the brain.
The four components involved in the perception of a sensation are stimulus, sensory receptors, neural processing, and perception. Stimulus is the physical energy that triggers a response in sensory receptors. Sensory receptors detect the stimulus and convert it to neural signals. Neural processing occurs when these signals are transmitted to the brain and interpreted. Perception is the conscious awareness and interpretation of the sensation.
The detection of physical energy emitted or reflected by physical objects is called remote sensing. This technology is used to gather information from a distance by recording and analyzing the energy that is emitted or reflected by objects on the Earth's surface.
Sensation is basically using ones sense organs and getting the stimuli...like smell,visuals etc but perception is broader it deals with selection,organization and interpretation of that stimuli....one who percieves have more processes ie top down and bottom-up etc
To keep us alive.If we didn't east food we would be dead!We need food for our energy source- if we didn't have it we would die of starvation and die of not being able to do normal daily functions. Also we would get extremely sick :(
Sensory receptors translate physical energy into neural signals.
A specialized area of sensory neuron that detects a specific stimulus is called a sensory receptor. These receptors are designed to respond to specific forms of stimulation, such as touch, light, or sound, and convert the energy from these stimuli into electrical signals that the nervous system can interpret.
The process whereby receptor cells in the skin transform one form of energy into electrical signals that can be interpreted by the brain is called transduction. This process allows the brain to interpret information about touch, temperature, and pain.
The instrument that converts electrical energy to sound or image signals in a radio or television is called a speaker for sound signals and a screen or monitor for image signals. These devices receive electrical signals and convert them into audible sound waves or visual images for the viewer.
Sensory receptors are specialized cells that convert physical energy into electrical signals. These signals are then relayed to the brain for interpretation, allowing us to perceive sensations like touch, taste, and sound.
The devices used to convert sound energy to electric energy are called microphones. Microphones capture sound waves and convert them into electrical signals, which can then be amplified, recorded, or processed by electronic devices.
A microphone converts sound energy into electrical signals. These signals are then transmitted to a recording device or a sound system for amplification and manipulation.
Yes, sound energy can be converted into other forms of energy such as electrical energy using devices like microphones that convert sound waves into electrical signals. These electrical signals can then be used to power various electronic devices or systems.
Sound energy signals are called sound waves. These waves are caused by the compression and rarefaction of particles in a medium, such as air, that result in the transmission of sound energy.
A photodetector or light sensor is used to convert light energy into electrical signals, which can then be converted into sound using a speaker or headphones. The electrical signals are amplified and converted into sound waves that we can hear.
A microphone typically uses electrical energy to convert sound waves into electrical signals. The electrical signals can then be amplified and processed by audio equipment for recording or broadcasting.
Retina cells in the eye convert light energy into electrical signals, which are sent to the brain for processing. Cochlear cells in the ear convert sound waves into electrical signals that the brain can interpret as sound. Taste buds on the tongue convert chemical molecules from food into electrical signals that the brain interprets as taste.