Chapter 557 Do you know what a magnetic enclosure is for?



Xing Baohua was dumbfounded. He thought, "I just really wanted to get a chip, and you've dragged me into the 235U."

You guys came up with a theory and you've all attributed it to the big mushroom. Is that something his small frame can handle?

Just now, that MD organization, do you know how capable they are? There's an oil-producing man in the desert, and he built a power plant. After the MD got intelligence, they sent a few F-16s, flew at extremely low altitudes for long distances, laid a few eggs, and wiped it out.

After working through the theory, it's time for experimentation, but Xing Baohua wouldn't dare even if he had a hundred lives.

And you know what? Central Shandong is a magical place. The first raw material for Miss Qiu's pills was provided by the Jinling Mine in Central Shandong.

We certainly don't lack raw materials, but we just don't have the guts. We can't even have the idea; it'll be slapped to death.

So, let's just forget about magnetism; at such low temperatures, the chip wouldn't even get hot.

If we're talking about the issue of chip overheating, this brings us back to Xing Baohua's area of ​​expertise: the heat generated by electric current.

When you operate at zero resistance, the heat generated is negligible.

Who would have thought that electronics research would lead to physics research?

This physics expert probably saw that Xing Baohua was rich and gullible and wanted to do some side jobs on the side.

Fortunately, Chen Shuoyue knew a little about physics. If they hadn't been arguing, Xing Baohua would probably have been led astray.

Currently, the theoretical focus is on high-temperature superconductivity and low-temperature superconductivity. However, once the focus shifts to high-temperature superconductivity, the materials required will be different.

The temperature here is still below -100 degrees Celsius. If you were suddenly told it's high temperature, someone with a short attention span might think it's hotter than boiling water.

Xing Baohua thought to himself, since it's all one or two hundred degrees below zero anyway, there's not much difference, so he decided to base the theory on high-temperature superconductivity and use it as the carrier for quantum chips to deduce the theory.

Let's finish the theoretical stuff quickly and start experimenting little by little.

Xing Baohua said to Zhang Dongshuo, "I'll go to the capital in the next couple of days. If I have time, I'll come back. If not, I'll go straight to Hong Kong. You're in charge, so follow your plan."

By saying this, he was telling Zhang Dongshuo that if they had another argument, he shouldn't argue anymore; he should just slam his fist on the table and follow his own ideas.

This means Xing Baohua has delegated authority to him. He can just do things his own way.

Actually, it was the physics experts who did it. Why did they keep trying to get to H fusion? Weren't they just digging their graves?

Although Zhang Dongshuo was put in charge of the development, we still need to find a few more physicists, as their contributions will be indispensable for future development.

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