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1. By fireflies.
Invent artificial cold light.
Scientists have found that the glowing device of the firefly is located in the abdomen. This luminaire is composed of three parts: a light-emitting layer, a transparent layer and a reflective layer. The luminescent layer has thousands of light-emitting cells, and they all contain two substances, luciferin and luciferase.
Under the action of luciferase, luciferin fluoresces when it is oxidized with the participation of intracellular water. The glow of fireflies is essentially turning chemical energy.
The process of conversion into light energy.
2. Camouflage clothing was invented by butterflies.
Based on the lack of understanding of camouflage at that time, the Soviet entomologist Schwanvich proposed the principle that the color of butterflies could not be easily found in the flowers, and covered military facilities with butterfly-like camouflage.
Therefore, despite the efforts of the German army, Leningrad.
's military base is still unharmed, laying a solid foundation for winning the final victory. According to the same principle, later people also produced camouflage uniforms, which significantly reduced the number of ** in battle.
3. The vibrating gyroscope was invented by flies.
According to the navigation principle of fly wings, scientists have successfully developed a new type of vibrating gyroscope. Its main components, like a tuning fork, are attached to the base by a central post. An electromagnet mounted around the arms of a tuning fork.
Causes the tuning fork to produce vibrations of a fixed amplitude and frequency, like the vibration of a fly flapping its wings.
4. Reinforced parachutes and suspension bridge cables with spider silk.
The molecules in the spider silk are tightly arranged and orderly, which is crystalline, similar to the crystallized structure of metal, and the molecular structure of some sections is similar to that of rubber.
These cross-sections alternate, which is the fundamental reason why spider silk has high strength and high elasticity and toughness.
5. The vibrating light navigator was invented by bees.
Each monocular eye of the bee compound eye is arranged next to each other with polarized light.
A polarizer that is very sensitive to direction and can be accurately positioned using the sun. Scientists have successfully developed polarized light navigators based on this principle, which have long been widely used in navigation.
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It's just that what they can hear, we may not hear. The sound we make is not necessarily within their reach. Like us humans, we can't hear ultrasound or infrasound.
Insects may hear ultrasound or infrasound. Butterflies can contact their companions by flapping their wings. And this is a kind of infrasound.
They must have a response to sound waves.
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Summary. It's just that what they can hear, we may not hear. The sound we make is not necessarily within their reach.
Like us humans, we can't hear ultrasound or infrasound. Insects may hear ultrasound or infrasound. Butterflies can contact their companions by flapping their wings.
And this is a kind of infrasound. They must have a response to sound waves.
It's just that what they can hear, we may not hear. The sound we make is not necessarily within their reach. Like us humans, we can't hear ultrasound or infrasound.
Insects may hear ultrasound or infrasound. Butterflies can contact their companions by flapping their wings. And this is a kind of infrasound.
They must have a response to sound waves.
Have people been inspired to invent anything?
Invented ultrasound, ultrasound.
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The auditory hairs of insects are an organ that senses sound waves and is located on the surface of the insect's body and is able to receive sound wave signals from the outside world and transmit them to the insect's nervous system for processing and analysis.
This kind of auditory hair has inspired people to develop new sensitive components and sensors in the fields of robotics and wireless communication. For example, based on the principle of auditory hairs in insects, sensitive components such as miniature piezoelectric ceramic sensors and MEMS (microelectromechanical systems) sensors have been developed, which can be used to recognize, detect and analyze sound signals in the environment by lifting chains.
In addition, insect auditory hairs have also inspired people to invent a sonar system called "MEMS microphone array", which can achieve high-precision acoustic wave detection and imaging in the underwater environment, and this technology has been applied to the exploration of sea rolling ocean resources, biological research and submarine reconnaissance in the military field.
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It is endless wealth and the cornerstone of our development and progress.