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[The Great Tech Rivalry: Analyzing the Strategic Competition Between the US and China]-[The US-China Tech Race]

Exchanges · B2 · 2025-12-10

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📋 Summary

The Geopolitical Switchboard: Technology as the New Frontier

The technological race between the United States and China is no longer just a sector-specific competition; it is, as Mark Kennedy describes, the "switchboard" of the modern world. Whoever controls the data, standards, and compute power will effectively dictate the future of military might, economic influence, and soft power. While the U.S. currently holds a lead in core technologies like semiconductors, AI frameworks, and quantum computing, China has carved out significant advantages in quantum communications, hypersonics, and battery technology. The rivalry is defined by four distinct arenas: technological innovation, application, digital infrastructure installation, and self-sufficiency.

The Four Pillars of the Tech Race

  1. Technological Leadership: The U.S. remains ahead in research and cutting-edge hardware development. However, Kennedy notes that the U.S. is currently "flat or reducing" funding for university research, which threatens its long-term dominance.
  2. Application: China is aggressively applying robotics in manufacturing, utilizing "12 times as many robotics" when adjusted for income scale. Their ability to translate technology into industrial output is a formidable competitive edge.
  3. Global Digital Plumbing: China is dominating the installation of infrastructure in the Global South. Companies like Huawei have become ubiquitous, and China’s strategy of building "the wiring, the rails, and the digital flows" ensures they have a captive market as Western influence faces scrutiny.
  4. Self-Sufficiency: China is executing a deliberate strategy of independence, exemplified by government edicts that discourage the use of Western chips and promote domestic alternatives.

The Semiconductor Choke Points

Paul Triolo highlights that the semiconductor supply chain is not a single linear path but a "complicated set of technologies that crisscross the globe." The most critical "choke points" include advanced lithography, specifically EUV (Extreme Ultraviolet) lithography tools produced by ASML, and the manufacturing dominance of TSMC, which produces "over 90% of the most advanced nodes." While U.S. export controls have successfully restricted China’s access to the most advanced GPUs and lithography equipment, these policies have also acted as a catalyst. They have forced Chinese firms to innovate internally, leading to a burgeoning domestic ecosystem that is rapidly closing the gap.

The Paradox of AI Development

Surprisingly, while the U.S. leads in proprietary, closed AI models (OpenAI, Anthropic), China has surged ahead in the open-source and open-weight model arena. Companies like DeepSeek, Alibaba, and Tencent are releasing models that are gaining rapid adoption. This shift creates a "battle for trust." The U.S. model is often viewed as more reliable, but China’s strategy of providing affordable, open-source technology allows them to bypass the trust deficit by embedding their tech into the digital architecture of developing nations.

Energy: The Silent Constraint

Both experts agree that energy availability is a major "gating function" for the future of AI. Data centers require massive, constant, and stable power. The U.S. faces significant domestic challenges in scaling energy production and lacks a unified grid, whereas China is leaning heavily into wind, solar, and nuclear energy to power its computational growth. If the U.S. cannot solve its energy supply chain issues—specifically regarding turbines, transformers, and regulatory hurdles—it risks losing the infrastructure battle, potentially driving U.S. companies to build data centers in regions like the Middle East where power is more accessible.

Conclusion: A Bifurcated Future

Ultimately, the race may not result in a single winner but a bifurcated system. The U.S. may retain the "blueprints" and advanced code, while China secures the "buildings" and physical infrastructure. The sheer volume of Chinese STEM graduates—which takes on a "quality of its own"—combined with sustained, long-term government investment, suggests that China is well-positioned to win the application and installation tracks. For the U.S. to maintain its lead, it must move beyond "admiring the problem" and take deliberate steps to secure supply chains, increase research funding, and address the critical energy constraints that threaten to stall its digital progress.

🎯Key Sentences

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I don't think it's being overplayed.
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The U.S. needs to take that seriously.
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That's going to mitigate our trust.
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There's absolutely no question that having our own foundry is vital.
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First of all, they're doing a lot of things right.
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📝Key Phrases

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move the needle
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the jury is still out
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at the heart of
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lean into
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stay on course
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📖 Transcript

The world's two largest economies are competing in a tech race that some have compared to the Cold War nuclear and space race between the US and the Soviet Union.
So is the US or China currently ahead?
And what will determine who ultimately takes the lead in this technological rivalry?
I'm Alison Nathan, and this is Goldman Sachs Exchanges.
Each month I speak with investors, policymakers and academics about the most pressing market-moving issues for our top-of-mind report from Goldman Sachs Research.
I recently spoke with Mark Kennedy, founding director of the WABA Initiative for Strategic Competition at NYU's Development Research Institute, and with Paul Triolo, partner at DGA Albright Stonebridge Group.

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