However, even this price is still very expensive. The price of each dose of medicine is also in ten energy coins. If you want to inject medicine for 50% of the people in the country, that is, the injection requirement of 600-700 million, you only need 60-70 billion energy coins.
Even if Lao Huang has received a lot of energy from Lao Du and others over the years, there is still a big gap, not to mention injecting genetic drugs for all people in the country and all mankind.
It is precisely because of this that he can only inject genetic drugs for young people first. Of course, if the situation changes at that time.
For example, Wang Bin's breakthrough in gene medicine manufacturing technology and the completion of large-scale production line have led to a significant reduction in the price of gene medicine, so that he can buy more gene medicine at the same price.
Or he can get more energy from Lao Du and others.
Of course, in fact, in the technology mall, not only Lao Huang but also Tony and other customers want to buy genetic drugs from Wang Bin.
However, due to the limited production capacity of Tiangong technology and the most urgent demand for genetic drugs in the world where Lao Huang is located, the most important thing is that Lao Huang is also Chinese, although he is in a different world.
Of course, for the large-scale production line of gene medicament, at this time, the construction of Tiangong science and technology desert Industrial Park has also begun. However, the construction of the production line required for gene medicament is not simple.
Many equipment are not sold at all in the real society. They can only be purchased from the customers of the mall or from the mall system. Therefore, it is impossible to complete the construction every few months.
Of course, in addition to genes and aircraft R & D, they have also made a series of achievements in other aspects. For example, in the field of materials, they have also developed a variety of materials with excellent performance recently, and these materials play a very important role in the next development of Tiangong technology.
Take the latest space light steel developed by Tiangong technology. Although the weight is less than one thirtieth of that of ordinary steel, its strength is hundreds of times that of ordinary steel.
In addition, the performance in terms of heat resistance is also very excellent, and even has reached the level of the latest heat-resistant special glass of Tiangong technology.
It can be said that this newly developed space light steel is definitely the best material for manufacturing space equipment, space station shell and internal main framework.
In addition, there are engine materials with higher heat resistance and strength.
However, due to their latest research and development achievements in materials, the idea of launching their own space station module of Tiangong technology in recent days was delayed with the emergence of new materials.
Because, Wang Bin, they are going to use this new material to build other modules of the space station, including the research module to be launched in recent days.
After all, the advantages of new materials are too great compared with those of the original space station.
However, just a few days after Wang Bin delayed launching the scientific research module of their own space station, good news came again from the test area, that is, the newly established high-energy physics laboratory of Tiangong technology had a new breakthrough.
They have successfully raised the thrust of the atomic engine, that is, the isotope engine, which could only reach about 6 tons, to 12 tons. At the same time, the maximum thrust in the atmosphere has also reached about one ton.
You know, the original isotope engine of Tiangong technology has no thrust in the atmosphere! The maximum thrust is only a few hundred kilograms.
And in terms of the self weight of the engine itself, it has also been greatly reduced. Now the self weight of this engine is only about two tons.
It can be said that the achievements of the high-energy physics laboratory are absolutely very important for Tiangong technology. After all, with this engine, it means that their Tiangong technology spacecraft, including aerospace aircraft and spacecraft, can fly further in the universe with less fuel.
Take Phoenix kt1 aerospace aircraft for example. With this engine, the maximum flight altitude of this aircraft can be greatly improved.
At least the requirement put forward by old Qin before they arrived, that is, the maximum flight track altitude of 400 km, there is absolutely no problem. Even if you want to fly higher, it is not impossible. As long as you slightly modify the aircraft and increase the fuel volume of the aircraft, even a 1000 km track is not impossible.
We should know that after the aircraft uses this engine, when the aircraft flies out of the atmosphere, it does not need oxidant at all, that is, the aircraft engine can directly use fuel like the engine in the atmosphere without carrying heavy liquid oxygen, which can greatly increase the range of the aircraft.
This makes Wang Bin very excited.
However, this is not the only technology that the high energy physics laboratory has broken through this time. In addition to this technology, the high energy physics laboratory has also achieved some success in the engine in the thermonuclear field, and has manufactured the first nuclear rocket engine. According to the data, this rocket engine, Its thrust is very high, up to the amazing level of 50 tons.
However, it is very regrettable that this rocket uses nuclear fission technology, which uses the principle of nuclear detonation to send the spacecraft to heaven. Therefore, this rocket will have strong radiation during launch, which is not suitable for the engine of manned rocket at all.
Moreover, during the launch process, it will have a very serious impact on the environment around the launch, so it is doomed that this rocket engine can not be used as the main engine of the first stage rocket.
However, if it is used on unmanned spacecraft, there will be no such problem, such as large deep space probes.
After all, with this rocket continuously providing power, the speed of the deep space probe can be faster, and its internal nuclear fuel can also continuously provide energy for the spacecraft.
Although this rocket engine can only be used on unmanned deep space probes, it can not really be used on manned spacecraft, such as spaceships and space planes.
However, their high-energy physics laboratory of Tiangong technology can develop a nuclear rocket in such a short time. Wang Bin is definitely looking forward to it.
In addition to these two technologies, in fact, among these achievements of the high energy physics laboratory, Wang Bin is most looking forward to the third technology.
Although he had known the third technology and what it was, he couldn't help being very excited. Although a large part of these technologies were provided by Wang Bin, and the high energy physics laboratory only made these technologies a reality, it is also very expected.