Chapter 193 "Future Technology" Seminar
Chapter 193 "Future Technology" Seminar
Compared with the heat-resistant metal project research group of his supervisor Zhou Zheng, he believes that the seminars organized by previous alumni are more helpful to his scientific research.
In this workshop, he can exchange ideas, share experiences with other scientists and engineers, and receive valuable feedback and suggestions.
This kind of cross-disciplinary collaboration and knowledge sharing is critical to driving scientific progress.
By communicating with professionals in different fields, Zhou Zheng was able to broaden his horizons and learn about the latest developments in other related fields, thus providing new ideas and methods for his own research.
In addition, interaction with alumni will enable him to build a wider network of personal connections, which will have a positive impact on future scientific research collaboration and career development.
Therefore, although the heat-resistant metal project research group also provided certain support, the seminars organized by previous alumni are undoubtedly one of the platforms that Zhou Zheng attaches the most importance to, and are also an important boost to his continuous pursuit of scientific breakthroughs.
Zhou Zheng’s university alumni are all shining in their respective fields, and some have become leaders in the industry.
Some of them are engaged in research in materials science, electronic engineering, life sciences, etc., while others focus on the development of artificial intelligence and computer technology.
That’s right, in this era there is actually a discipline called computer technology, and there are also certain conjectures and research on artificial intelligence, which makes Zhou Zheng a little unbelievable.
"If you don't get into science, you will never know how insignificant you are." Zhou Zheng often comforts himself in this way.
At the same time, these outstanding talents also jointly established a scientific exchange conference called "Future Technology".
The members of this organization come from different fields, but they all share a passion for scientific exploration.
At this exchange meeting, everyone shared their research results, discussed the most cutting-edge scientific issues, inspired each other, and looked for opportunities for cooperation.
This scientific exchange conference covers a very wide range of fields, including physics, chemistry, biology, computer science and many other fields.
Members regularly hold seminars, lectures and labs to provide a deeper understanding of the latest developments in other fields.
As a scientist, Zhou Zheng is naturally passionate about this kind of interdisciplinary communication and cooperation.
He actively participated in various activities of the scientific exchange meeting, not only learning a lot of new knowledge and skills, but also making more like-minded friends.
In this process, Zhou Zheng's knowledge reserves were greatly expanded.
He began to combine his expertise in physics with other fields and tried to solve problems from different perspectives.
This collision of ideas significantly enhanced his scientific research capabilities, and these valuable experiences also laid a solid foundation for his future scientific research and development career.
At a seminar on quantum mechanics, Zhou Zheng had a heated discussion with a biologist.
The biologist suggested that the principle of quantum entanglement could be used to achieve efficient data transmission, thereby accelerating the development of gene editing technology.
This idea aroused Zhou Zheng's great interest, and he immediately realized that if he could find a way to apply quantum mechanics to the field of biology, it might bring about a huge breakthrough.
Of course, this biologist's ideas were very advanced. In the 1960s, when the principle of quantum entanglement was not yet mature, he was undoubtedly a "heretic" in scientific research.
If he succeeds in developing it, it will be enough to change history.
Zhou Zheng also wanted to see what would happen after changing history.
So he took the initiative to contact the biologist, hoping to carry out further collaborative research.
After a period of hard work, the two successfully designed a new gene editing solution based on the principle of quantum entanglement.
This approach greatly improves the efficiency and accuracy of gene editing, providing new possibilities for the treatment of certain diseases.
This successful collaboration made Zhou Zheng deeply realize the importance of interdisciplinary communication and strengthened his determination to continue participating in scientific exchanges.
However, this research is not mature yet and cannot be applied in any field of society for the time being.
But the valuable data left by its plan undoubtedly opened a new path for scientific research.
Although, the biologist did not play a key role in this collaboration.
But he has a quality that cannot be described as good.
That is, every time he puts forward a point of view, he would have wild imagination. Not to mention that ordinary people would find it unreliable, even scientists who have been immersed in his field for many years might not find it reliable.
But Zhou Zheng has the [Other People's Children's Learning Cards]. For Zhou Zheng, the scientist's wild imagination is scientific knowledge that can be put into practice.
With Zhou Zheng's help, this is the specific factor that makes this plan successfully designed.
In fact, when Zhou Zheng, a biologist, proposed the idea of gene editing, what he had in mind was the "super genetic engineering" in "Super Seminary".
However, when they were formulating the plan, they found that they were still very far from "super genetic engineering".
The possibility of its realization cannot be ruled out, but given the scientific environment in the 1960s, it was undoubtedly a pipe dream to realize "super genetic engineering".
Even with the help of [Other People's Children Knowledge Cards], it is impossible to achieve it.
During the scientific seminar, the biologist's incident was not an isolated case. Zhou Zheng participated in many scientific ideas. He found that in such circumstances, the effectiveness of [Other People's Children's Knowledge Cards] was the best.
And [Other People’s Children’s Knowledge Card] has become Zhou Zheng’s biggest plug-in.
As time went by, Zhou Zheng gradually became one of the core figures in scientific exchanges.
His expertise and innovative thinking have won the respect and recognition of many members.
At the same time, he also met more and more outstanding scientists through this platform and established good cooperative relationships with them.
These partners provide strong support for Zhou Zheng's scientific research and development career, allowing him to constantly challenge himself and pursue higher achievements.
In short, the scientific exchange meeting opened a door to the vast world of science for Zhou Zheng.
Here, he not only learned knowledge, but also gained friendship and inspiration.
It is precisely because of such a platform that scientists like Zhou Zheng can give full play to their talents and promote the progress of human society.
However, with the participation of Zhou Zheng, a very talented person, many scientific ideas that were originally only theoretical or required more time and resources to achieve can now be put into practice and achieve success.
You know, we have just entered the 1960s!
The realization of these scientific ideas has actually quietly changed the course of history.
Therefore, even Zhou Zheng himself was not sure whether the door to the scientific world they opened would bring endless disasters like the legendary Pandora's Box.
After all, who can predict what the future will hold?
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