Asia
Iran’s uranium enrichment program since 1979
Iran’s uranium enrichment program underwent major changes after the Islamic Revolution in 1979. During the Pahlavi dynasty, Iran had extensive cooperation with Western countries and even received offers to participate in enrichment consortiums.
But after the revolution, this cooperation stopped and Iran pursued the independent development of its own nuclear technology. In the 1980s, Iran was able to achieve an enrichment level of 3.67 percent, which was suitable for supplying fuel to nuclear power plants.
Over time, this rate increased, reaching 60 percent at some points, which raised concerns internationally. Accordingly, the JCPOA, a nuclear agreement between Iran and world powers, was signed in 2015. The agreement was concluded by Iran and the P5+1 group (the United States, UK, France, Russia, China, and Germany) and aimed to limit Iran’s nuclear program in exchange for the lifting of economic sanctions.
Under the deal, Iran committed to limiting its enrichment level to 3.67 percent and reducing its stockpile of enriched uranium. Extensive monitoring by the International Atomic Energy Agency was also imposed on Iran’s nuclear facilities.
US withdrawal from the JCPOA caused Iran to gradually reduce its commitments and increase its enrichment level.
But in 2018, the US administration under Donald Trump withdrew from the JCPOA agreement. The reasons for this withdrawal included US concerns about Iran’s regional influence and the lack of coverage of Iran’s missile program in the agreement.
The US withdrawal from the JCPOA caused Iran to gradually reduce its commitments and increase its enrichment level. In the following years, Iran announced that it had achieved 60pc enrichment and even had plans to increase this level further.
Because uranium enrichment has many applications – at low levels (3.67 percent), it is used to produce fuel for nuclear power plants. At higher levels (20 percent), it has medical applications, including the production of radioactive isotopes for cancer treatment.
But enrichment at 90 percent would lead to the production of nuclear weapons, although Iran has always insisted that its nuclear program is peaceful.
Deadly conflict between Iran and Israel, the two arch-enemy and its impact on the region
The conflict between Iran and Israel is also directly related to Iran’s nuclear program. Israel has always considered Iran’s nuclear program a threat to its security and has in some cases launched cyberattacks and even physical attacks on Iranian nuclear facilities.
On the other hand, Iran considers Israel a threat to the region and supports resistance groups in the region. These tensions have made the Iranian nuclear issue one of the main axes of regional disputes.
Meanwhile, the war between Iran and Israel has widespread effects on the region and especially on the economies of neighboring countries, including Afghanistan.
This conflict not only has military and political consequences, but has also affected the economy of the region and increased economic instability.
Israeli attacks on Iran’s nuclear and military facilities, especially oil facilities, could reduce Iran’s oil production and exports.
This will lead to an increase in global oil prices, which will have a direct impact on the economies of countries that depend on energy imports. Countries in the region, including Turkey, Iraq, and Afghanistan, which source some of their energy from Iran, will face increased import costs.
However, Afghanistan will be directly affected by the war due to its heavy dependence on imports from Iran. The country imports many consumer goods, including food, fuel, and construction materials, from Iran.
The energy crisis is also a major consequence of the conflict between Iran and Israel
If the war intensifies, these imports will be disrupted and prices will increase. The energy crisis is also a major consequence of the conflict. Afghanistan gets a significant portion of its electricity from Iran, and if Iran’s energy exports decrease, Afghanistan will face a power shortage, which will have a negative impact on industries and the daily lives of people. Disruption of trade routes is another consequence of this war.
Reduced imports from Iran and increased transportation costs will increase inflation in Afghanistan, which will put more economic pressure on the people.
These effects occur through several economic and geopolitical mechanisms. New sanctions against Iran could reduce the country’s exports and increase the price of imported goods to Afghanistan.
Regional instability could also increase insecurity on the Iranian-Afghan border, which would affect trade and investment.
Military conflicts could make trade routes unsafe and increase the cost of transporting goods. A prolonged Iran-Israel war would be not only a military crisis, but also an economic crisis for the region and Afghanistan.
Rising oil prices, disruptions in trade, an energy crisis, and inflation are among the consequences of this war. Afghanistan, due to its heavy dependence on imports from Iran, will be the most affected and may face serious economic and social problems. The future of this crisis depends on diplomatic decisions and regional developments; but what is certain is that its economic effects will be widespread and long-lasting.
Asia
South Korea plans $120B spend on eight US nuclear power plants
South Korea will spend $120 billion to construct eight nuclear power plants in the US under an agreement that provides for $350 billion in investments in exchange for lower tariffs.
The South Korean government also announced that Seoul and Washington will begin examining a liquefied natural gas (LNG) project in Alaska comprising a large-scale pipeline to transport natural gas from the north of the state to the south, alongside the construction of an LNG terminal for exports overseas.
Seoul stated that a decision regarding the LNG project will be made following a commercial feasibility study. However, US President Donald Trump said that South Korea would invest $54 billion in the project, pointing to an apparent lack of full coordination between the two sides on the matter.
Trade and Industry Minister Kim Jung-kwan said in a statement: “This announcement opens a new horizon of cooperation where the two countries join forces to develop joint commercial ventures in strategic areas directly linked to economic security and future sectors such as artificial intelligence, nuclear energy, and LNG.”
“We will adhere to the principle of prioritising national interests and investing solely in commercially viable projects,” Kim said.
Speaking at the White House, Trump characterised South Korea’s plans as “one of the largest energy infrastructure investments in American history”.
The announcement followed a meeting between Trump and South Korean President Lee Jae Myung roughly one year ago at the APEC Economic Leaders’ Meeting held in South Korea, where they agreed on the creation of a $350 billion investment fund.
Under that agreement, $150 billion was allocated to the shipbuilding sector and $200 billion to other sectors. In return, the US announced it would reduce tariffs imposed on goods imported from South Korea from 25% to 15%.
Under the nuclear power project, South Korea’s state-controlled utility will build two plants in the US, while Pennsylvania-based Westinghouse Electric will construct six plants.
According to the South Korean government, this will mark the first instance in which a foreign country builds its own nuclear power plants in the US.
South Korean firms are also evaluating the possibility of acquiring a stake in Westinghouse as part of negotiations over sharing profits generated by the project.
South Korea additionally announced that it will build a $22.3 billion natural gas-fired power plant in Texas with a capacity of 6,472 megawatts.
The facility will be designed to supply electricity directly to nearby data centres. The project’s first phase is targeted to begin commercial operations in 2029, with full-capacity operations slated for 2032.
Seoul also disclosed that it had agreed to allow the US to receive 50% of the profits generated by the projects until South Korea recoups all of its investments.
After South Korea fully recovers its total investment amount, 90% of the profits will go to the US.
Asia
DeepSeek engineer warns AI will lead to communism or Cyberpunk
Shengyu Liu, a low-level hardware architecture and processor kernel optimisation specialist at China-based artificial intelligence organisation DeepSeek, has published an assessment addressing the existential crisis facing software developers and humanity amid the pace of AI advancement.
A senior engineer who personally coded the core attention mechanism kernels for the DeepSeek v4.1 model, Liu stated that the technology he developed with his own hands will very soon render his professional expertise redundant and has initiated the phasing out of human labour.
Arguing that AI will steer future societies either towards a communism in which productive forces are entirely emancipated or towards a dark Cyberpunk dystopia where resources are concentrated within mega tech monopolies, Liu highlighted the vital importance of the open-source software struggle for humanity.
Noting that the DeepSeek v4.1 model released a few days ago raised the capability ceiling for small-scale systems, Liu stressed that transformation across the sector is advancing at an inconceivable pace.
Recalling that the transition from initial chatbots with context lengths of only a few thousand semantic tokens to reasoning-capable contemporary models took just two years, the senior engineer observed that the emergence of autonomous agents executing complex instructions within test and execution environments spanned a period of merely one and a half years.
Stating that AI will attain the capacity for self-improvement and full integration into physically embodied systems within the next few years, Liu described the transformation this development has generated in his own field:
“AI is taking incredible strides in processor kernel design and authoring, the field for which I am responsible. Within the span of merely a year, it transformed from a modest assistant that merely scanned technical documentation, read code, and identified bugs into a master that independently reads GPU machine-language instructions and hardware-level instruction sequences directly. Using professional profiling tools, it inspects instruction latency stalls and optimises processor kernels autonomously. In the not-so-distant future, it will also acquire the ability to independently design instruction scheduling, weigh the performance of different plans, implement them, and bring them to perfection.”
Expressing pride in the success achieved by the DeepSeek v4.1 model as a concrete fruit of his own labour, Liu noted that he personally coded the system’s most critical attention mechanism components, stating that the model’s success serves as an endorsement of his craft, yet the superhuman nature of technological progress remains unstoppable.
astonishing blogpost from Shengyu Liu (刘胜与, also known as interestingLSY/intlsy), kernel engineer at DeepSeek. The first part is his personal struggle with the fact that his work is about to render his beloved craft obsolete. The second is…
well. let's just say we agree. https://t.co/1mqyOqbl2Y pic.twitter.com/sw4t4bUE0k— Teortaxes▶️ (DeepSeek 推特🐋铁粉 2023 – ∞) (@teortaxesTex) September 14, 2026
“I want to lead my own revolution”
Liu considers it a certainty that within six months to a year, AI will generate processor kernels far superior to his own.
Pointing to the rapidly widening chasm between the human mind and machine capacity, the senior engineer said: “AI can think at 300 semantic tokens per second, write a line of code in half a second, and complete an entire block of code in 20 seconds. I cannot do this. AI can continually increase model depth, thinking intensity, external tool invocation frequency, and processing parallelism; I cannot achieve this.”
Emphasising that software engineers have been drawn into a race knowingly preparing their own demise, Liu explained why he works day and night on optimisation efforts that accelerate his own obsolescence:
“Throughout history, humanity has never hesitated when it comes to self-destruction. Knowing that the more flawless the kernels I write, the faster our new model’s training and inference speeds will be, the more its capabilities will multiply, and the earlier I will be sidelined, why do I continue to optimise with all my strength? On one level, this work is like a game to me; it brings me indescribable pleasure. When I discover a new method or see the performance curve of my code rise, the thrill I feel is no different from that of a record-breaking speed enthusiast. Moreover, I feel immense pride when I outperform the official code of hardware vendors.”
Pointing to the ruthless competition on the other side of the coin, Liu stated: “Yet the primary reason is this: even if I quit today or deliberately slowed the progress of our models, other companies would continue their work and eventually eliminate me anyway. Naturally, no one wishes to see their own profession overturned; however, if this revolution is inevitable, I want the force that unseats me to originate from my own hands. In a landscape where everyone is so focused on self-destruction, I, too, am forced to join this relentless arms race.”
“The din of machines crushes the joy of craft”
Preparing for the day when AI surpasses his level of expertise, Liu noted that he will not face unemployment, but will be forced to switch domains.
Stating that his judgement, cognitive capacity, and initiative will allow him to remain at the core table of the industry, the specialist engineer observed that this adaptation entails a heavy emotional toll.
Explaining that shifting fields means abandoning an area to which he is deeply devoted, Liu described his sense of dislocation:
“Switching domains means leaving behind the hardware kernel design, coding, and optimisation work to which I have dedicated years and an ardent passion, only to become a machine operator of AI agents. In the past, my personal curiosity, my area of expertise, and industry demand were in complete harmony. Now, AI has become far more adept than I am in the exact domain of my expertise. Industry demand has shifted away from the human writing high-performance kernel code toward an operator prompting AI to produce such code more rapidly. To bow to this industry demand, I must abandon the field I love and steer toward an unknown path.”
Illustrating the transformation through the metaphor of a traditional craft, Liu continued:
“Consider, for instance, being a master sweater knitter who achieves exquisite patterns and colour harmonies. The quality of the fabric you weave is so superior that wealthy patrons from surrounding villages seek you out, earning you a good living. What is more, sitting by the window sipping tea while looking out at mountains, streams, and animals brings you deep peace as you knit in silence. Then one day, a machine is invented; you feed it only wool and a pattern template, and it knits the sweater identically to your manual craft, only far faster. Realising your competitors will easily overtake you with this tool, you begin using it yourself. Thanks to your 20 years of accumulated experience, you remain faster than your competitors even while operating the machine. Yet the elegance of those hours spent listening to the rain and working stitch by stitch is crushed and extinguished under the mechanical din of the machine. That quiet by the window will be experienced for the final time this summer. I must leave my talent behind in yesterday and become an armoured-machine driver; my hands hold more gears now, but my heart has lost its rhythm.”
“AI in the hands of the unskilled spells disaster”
Looking beyond personal sorrow to societal and pedagogical risks, Liu focused on signs of decay within the education system.
Noting that the new generation of students tends to delegate coursework assignments to AI, the veteran engineer remarked that a student who spends a few cents to have AI produce top-grade code within minutes, rather than sweating for eight hours to obtain an imperfect result, will be stripped of foundational skills.
Emphasising that this shortcut will erode vital engineering abilities such as systems building, code architecture design, abstraction, and anticipating future requirements during development, Liu expressed deep concern:
“Will this foundational engineering mindset fade into history like the skill of writing machine language in past eras, or will it retain permanent value like the capacity to grasp entire computer architectures from software down to hardware? If this comprehension continues to hold value, the situation is dire indeed. Because when an individual with weak engineering fundamentals is equipped with AI, they will produce mountains of garbage code far faster than before. This will plant countless ticking time bombs deep within software systems, driving the world toward a far more precarious, ramshackle structure liable to collapse at any moment.”
Pointing out that raw authority and power will become decisive in the future world rather than technical expertise and intellect, the senior engineer stated that only time can answer these fundamental questions.
“A binary future: Communism or a dark corporate dystopia”
Observing that humanity has arrived at a crossroads with the advancement of AI, Shengyu Liu emphasised that future society will evolve toward one of two radical poles, which he termed communism and Cyberpunk:
“With the momentum of AI, future society will probably be cast toward one of two extremes: communism or Cyberpunk 2077. In the first option, productive forces are completely unshackled, domination over the means of production is broken, and human living standards make an unprecedented leap forward. In the second option, a small tech oligopoly consolidates all resources. While a privileged elite gains access to the most advanced AI and cutting-edge technologies, ascending almost to a state of mechanical divinity, the overwhelming majority of society is left with extremely weak and constrained AIs. Upward social mobility becomes impossible; to reach a higher class, one must possess the most powerful AI, yet access to that AI requires already having been born into that class. An unbreakable cycle of exploitation is thus established.”
Openly criticising the monopolistic and closed models adopted by Western tech companies, Liu posed a pointed question:
“In a scenario where the world’s most advanced AI remains permanently monopolised by a company like Anthropic, do you believe the future will evolve toward communism or a dark Cyberpunk dystopia? Go ahead and guess.”
Stating his conviction that top-tier AI must be delivered openly, transparently, and free of charge to all humanity, the DeepSeek engineer expressed a lack of trust that actors such as Anthropic or OpenAI would uphold this mission.
Likening the possibility of Anthropic alone controlling artificial general intelligence to the catastrophe of nuclear technology falling into the hands of fascist regimes during World War II, Liu concluded with his rationale for remaining at DeepSeek:
“That is precisely why I chose to remain at DeepSeek and why I am holding the line here. We build powerful, lightning-fast AIs offered for the common good of all humanity, and we release them as open source. This is the path to pulling the world back from the brink of that dark corporate dystopia and liberating productive forces for the benefit of the people.”
Asia
Analysts warn new surge in Chinese exports threatens global markets
Financial Times writer Ryan Avent has written that a fresh, rapid surge in China’s trade surplus could signal a new wave of the “China shock”.
Economists define the “China shock” as a spike in Chinese exports to global markets that intensifies competition for manufacturers in advanced economies and curtails employment in certain sectors.
The term gained widespread currency after China joined the World Trade Organization in 2001, accelerating the inflow of inexpensive Chinese goods into the US and other nations.
The US was the country hit hardest by the initial shockwave. Between 1999 and 2011, more than 2 million jobs were lost because domestic producers were unable to withstand the competition.
Avent argued that the effects of the initial wave are still felt across the American economy because China failed to carry out the rebalancing that the world expected.
The share of net exports in China’s gross domestic product contracted during the 2007-2019 period, allowing Western nations to focus on national security and other matters.
Avent reported that the trade surplus is now escalating rapidly once again, posing a threat to the economies of wealthy nations.
The writer pointed to the stagnation of domestic demand following the collapse of the real estate market six years ago as one cause of this surplus. Another prominent factor is the Beijing government’s channelling of massive resources into manufacturing in pursuit of self-sufficiency.
Attention was also drawn to the role of the depreciating yuan. An appreciation of the currency could require China to alter its foreign exchange interventions, reduce purchases of foreign currency and assets, and sell those assets off. That scenario could trigger currency depreciation and rising interest rates in other countries.
The Wall Street Journal also reported in the spring of 2024 on economists’ concerns regarding a potential second wave.
Experts predicted that global markets would once again be flooded with inexpensive goods, stating that China was manufacturing far beyond domestic demand to overcome its economic troubles.
Moreover, it was stressed that China is now competing in high-technology fields such as automobiles, computer chips, and complex machinery manufacturing.
Meanwhile, Vasiliy Kashin, Director of the Centre for Comprehensive European and International Studies at the Higher School of Economics (HSE) University in Moscow, told the Russian media outlet RBC that the US has imposed sanctions on the Chinese economy since the first shock period, adding that these measures would very likely tighten in the event of a fresh export wave.
According to assessments reported by the Financial Times, this new process could also shake China’s own economy. Alongside rising output, entry-level manufacturing plants across the country are turning toward automation and reducing personnel.
This trend could trigger a painful departure from labour-intensive production, leaving millions unemployed. Manufacturing activities in China that previously capitalised on cheap labour are shifting to other Southeast Asian countries.
The Beijing administration rejected allegations that its industrialisation steps pose risks to other countries. As reported by the Xinhua news agency, China’s Ministry of Commerce stressed that claims of a “China shock 2.0” are groundless. The ministry stated:
“The US and other Western countries have circulated the so-called ‘China shock 2.0’ narrative, asserting that China’s industrial development has shaken Western monopolies and narrowed growth space for Global South countries. This claim is unsupported by concrete data and is entirely unfounded.”
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