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Chapter 555 Activation

After washing up, after eating the chicken chop rice packed by Cheng Cunwu, Xie Qing told Cheng Cunwu about his discovery.

"The electric field resonance of matter?" Cheng Cunwu thought.

He was still unsure of this discovery. After all, the situation on dry ice is the resonance of light waves, which is a proven theory.

There are also sounds, mechanical waves, photoelectric fields, etc., which will produce specific resonance peaks, such as the famous Carmenere vortex effect.

Many people can hardly imagine that a gust of wind below level ten can instantly tear a modern bridge made of reinforced concrete.

This is the speed and direction of the wind, which just resonated with the structure of the bridge itself, and instantly stimulated this magical and huge power.

Resonance is a very strange effect.

In simple terms, objects and forces (can be sound waves, light waves, radio waves, and mechanical waves) reach a specific frequency. Once the two touch, they will produce twice the result with half the effort.

"We need to redesign the experiment, what are your ideas?"

After taking a sip of carrot and pork rib soup, Xie Qing expressed his thoughts: "If trying one compound is too time-consuming and laborious, my idea is to start with the basic elements."

"Basic element? This is interesting." Cheng Cunwu immediately understood the other party's intention.

There are only 118 atomic species known to humans, including 24 artificial synthetic elements.

If some of the uncommonly used elements are kicked out, and the basic elements commonly used by humans are calculated, there are about 40 to 50 types.

Xie Qing firmly believes that if there is really a resonance frequency synthesized by electric fields, then this resonance frequency must start from basic elements and then develop into more complex compounds.

After a hurry to have lunch, the two of them called Xiong Lingxi again and came to the laboratory.

Xie Qing opened his notebook, sent the content he thought about in the early morning to the two of them for details, and then began designing the experiment.

Since we want to find out the electric field resonance frequency of the basic elements, they start with the lightest hydrogen element, and then helium, lithium, beryllium... one element after another goes up.

At 3:30 pm, they began an attempt, using liquid hydrogen as raw material, and then started an electrostatic field, and began a preliminary experimental observation.

After two whole weeks of busyness, they initially completed some experiments on the first eight elements.

During the experiment, Xie Qing and the other two tried to find out some law of the electric field acting on these elements.

During countless experiments, they finally saw a glimmer of hope.

"Temperature, the temperature of substances, especially solid substances in low temperature states." The table in front of Xie Qing was filled with various statistical tables.

Among them, several statistical tables placed by him in the middle lists eight elements. At different temperatures, by covering the electrostatic field, the efficiency of electrocatalytic can be achieved.

"There are really some rules in this temperature." Cheng Cunwu counted the resonance temperatures of hydrogen, helium, lithium, beryllium, boron, carbon, nitrogen, and oxygen.

Among them, hydrogen is negative 24 degrees Celsius, helium is negative 123 degrees Celsius, lithium is negative 26 degrees Celsius, beryllium is negative 37 degrees Celsius, boron is negative 45 degrees Celsius, carbon is negative 56 degrees Celsius, nitrogen is negative 66 degrees Celsius, and oxygen is negative 78 degrees Celsius.

Regarding these data, Xiong Lingxi predicted: "The next fluorine and electric field resonance temperature should be between minus 80 and 90 degrees Celsius, but neon and helium are the same family, and I guess it may be similar to helium."

"You'll know if you try it." After Xie Qing finished speaking, he took out a piece of white paper and wrote two experimental designs on it.

According to the experimental design, they found the electric field resonance frequency of fluorine element in the range of minus 80 to 90 degrees Celsius.

The neon element of the inert gases in the same family is roughly the same as Xiong Lingxi predicted, and the electric field resonance temperature of the element is around minus 127 degrees Celsius.

At night, the laboratory was still brightly lit.

The three of them discussed excitedly.

Xiong Lingxi pointed to the bar chart and said, "If we follow the current estimate, I will predict the resonance temperature of sodium, magnesium, aluminum, silicon, phosphorus, sulfur, chlorine and argon, and the electric field resonance temperatures should also be progressive within this range."

"But where are the 19th to 36th?" Cheng Cunwu became a little confused.

At this time, Xie Qing spoke and said, "The temperature interval may range from about 10 degrees Celsius to about 4 degrees Celsius."

"Something makes sense." Cheng Cunwu thought.

Of course, the temperature alone is not enough to generate electric field resonance. This electric field resonance requires another factor, that is, the electric field intensity.

Therefore, the core principle that forms electric field resonance is the electric field intensity + the temperature of matter, and the electric field intensity also increases with the increase of electrons in the outer layer of the atom.

This temperature and strength are not good if it is low or high, and it is not good if it is not good if it is optimally coupled at the same time.

When both the temperature and electric field strength are optimal, the chemical reaction efficiency of the element reaches the highest, and even helium and neon in the inert gas can produce relatively high chemical reactions.

Xie Qing's team tried to synthesize methane with hydrogen and elemental carbon.

During this synthesis process, they further discovered the principle of electric field synthesis, which is to give a temporary electric field force to the substance. At a certain temperature, the electric field force can be retained in the substance for a relatively long time, usually for about 20 to 70 minutes.

The substances that are given electric field forces will become easily combined when encountering other substances.

Xie Qing called this phenomenon "activation", that is, substances become highly active and easily react with other substances.

If both substances are activated substances, their combination is easier.

During the reaction of elemental carbon and hydrogen to synthesize methane, they found that the system's comprehensive thermal efficiency was as high as 86.7%, which is an incredible thermal efficiency.

You should know that when using N16 as a catalyst to decompose macromolecular organic matter to form methane, the comprehensive thermal efficiency is only about 63.54% to 71.63%.

The experiments they designed were not professionally designed equipment, and the entire reaction system was very rough, and it was definitely not the highest comprehensive thermal efficiency of the reaction.

Such an efficient reaction made all three of them feel incredible.

"This discovery alone can save a lot of unnecessary energy consumption in chemical reactions. It seems that we have discovered something extraordinary." Cheng Cunwu's breathing became a little rapid.

After calming down, Xie Qing thought for a while and said, "The most urgent task is to determine whether the electric field resonance law of the next elements is as we expected."

"Yeah! I agree." Xiong Lingxi nodded.

The three of them spent more than a week. Due to the law of electric field resonance this time, their experiments were very accurate.

A basic element only needs three or four fine adjustments to measure the temperature and electric field intensity of its electric field resonance. In more than a week, they tested 46 elements, which, like the previous eight, are in line with that set of regular models.

The electric field resonance law of basic elements is between minus 24 and 135 degrees Celsius, which is negatively correlated with the number of electrons in the outer layer of the atom; while the electric field intensity and reaction resonance are positively correlated.

Their key relevant data came up with the first and second law of electrocatalysis.
Chapter completed!
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