The husband and wife stood before the whiteboard, unable to suppress the shock in their eyes.
The new hardware language had really been created!
The details of the new hardware language were displayed prominently on a large whiteboard on the far left. At first glance, it did not seem especially complicated; it had taken up less than half the board. But on closer inspection, its contents were terrifying—a completely mathematical new language.
It first used systems of equations to express hardware structures, then abstracted the chemical properties of different materials into data and combined the components. The process was quite close to mathematical modeling.
Ordinary people simply could not use this kind of hardware language. To use it efficiently, one had to possess both terrifying mental-calculation ability and terrifying memory. Discussing the simple combination of just a few components required more calculations than an entire college-entrance-exam mathematics paper. At the same time, one had to memorize the chemical and physical values of hundreds or thousands of new materials and estimate the performance of every component.
But the child prodigies had discussed it and reached an agreement!
They were geniuses. Things ordinary people could not calculate mentally were as easy for them as drinking water, while values ordinary people could not remember were as easy for them to memorize as taking a piss!
The students who had not gone to the cafeteria were bent over the whiteboards, rapidly expressing the components they had already designed in the new hardware language. Their chaotic drafts were gradually becoming standardized, clear, smooth, and easy to understand at a glance!
Before long, the students who had gone to the cafeteria returned in groups, carrying packed meals. They went back to the whiteboards and ate while discussing.
Once the language was understood, the speed of discussion