Hydrogen Gas Absorption Spectrum
To observe the absorption spectrum of hydrogen gas, ancient scholars must have a way to study it.
Hydrogen is light and pure gas. To understand the absorption spectrum of its gas, you must observe it with a fine instrument. First place hydrogen in a closed device, the wall of the device needs to be transparent and strong, so that light can enter and the gas does not disperse.
Illuminate it with a light source, and the light passes through the hydrogen, and the various colors of light are absorbed or penetrated. Those who observe its transparency, analyze the color of the light, and remember it in detail.
The strength of the polyphonic light source and the length of the wave, and then observe the change of the light absorbed by hydrogen. Under low light, the absorption of hydrogen has different strong light; long-wave and short-wave are also different.
After many inspections, its spectrum was drawn. In the picture, the peaks and valleys are obvious, and the peaks are where the light is absorbed; the valleys are where the light is transparent. From this figure, it can be seen that hydrogen is easy to absorb from any wave of light, but difficult to absorb from any wave of light.
This method of studying the absorption spectrum of hydrogen gas can be used as the basis for understanding material and chemistry. Later scholars should follow it and be good at it, so as to explore the mystery of matter.
Hydrogen is light and pure gas. To understand the absorption spectrum of its gas, you must observe it with a fine instrument. First place hydrogen in a closed device, the wall of the device needs to be transparent and strong, so that light can enter and the gas does not disperse.
Illuminate it with a light source, and the light passes through the hydrogen, and the various colors of light are absorbed or penetrated. Those who observe its transparency, analyze the color of the light, and remember it in detail.
The strength of the polyphonic light source and the length of the wave, and then observe the change of the light absorbed by hydrogen. Under low light, the absorption of hydrogen has different strong light; long-wave and short-wave are also different.
After many inspections, its spectrum was drawn. In the picture, the peaks and valleys are obvious, and the peaks are where the light is absorbed; the valleys are where the light is transparent. From this figure, it can be seen that hydrogen is easy to absorb from any wave of light, but difficult to absorb from any wave of light.
This method of studying the absorption spectrum of hydrogen gas can be used as the basis for understanding material and chemistry. Later scholars should follow it and be good at it, so as to explore the mystery of matter.

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