AI Library

AI Library

Books for Reading AI

Choose a book, then read it in order from the table of contents.

Artificial Intelligence Translates the Language of Animals cover

Table of Contents

Artificial Intelligence Translates the Language of Animals

Kim Kyung-jin, Attorney at Law

The Story of AI Learning to Listen to Whales, Dolphins, Birds, and Bees

Twelve chapters on how AI listens to dolphins, sperm whales, humpback whales, birds, and bees to find rules in their sounds, and what this technology means for its risks and for animal rights. Written in simple sentences a child can read, with verified sources in every section.

AI Deciphers Ancient Scripts cover

Table of Contents

AI Deciphers Ancient Scripts

Kim Kyung-jin, Attorney at Law

Ancient Records Revived by AI

In twelve chapters, this book explains how AI revives records once unreadable, from burned scrolls and wooden slips buried in mud to broken clay tablets. It covers virtual unrolling at Herculaneum, virtual collation of oracle-bone texts, reading Silla wooden tablets, computational analysis of undeciphered scripts, and multispectral archives, with verified references for each chapter.

Artificial Intelligence for New Materials Design and Rocket Propulsion Engineering cover

Table of Contents

Artificial Intelligence for New Materials Design and Rocket Propulsion Engineering

Kim Kyung-jin, Attorney at Law

AI Potentials, Self-Driving Laboratories, and Physics-Informed Machine Learning (PIML)

Ten chapters on how artificial intelligence is changing new materials and rocket propulsion: atomic simulation, generative models, self-driving labs, high-temperature alloys, metal 3D printing, combustion, cooling design, and engine diagnosis and control. Written without equations, with verified sources in every chapter.

Uzbekistan Beyond the Blue Domes cover

Table of Contents

Uzbekistan Beyond the Blue Domes

Kim Kyung-jin, Attorney at Law

From Memories of the Silk Road to 2026 Changes and Practical Travel Logistics

An 18-chapter non-fiction book that explains Uzbekistan's history, society, economy, environment, and 2026 travel logistics, linking them to 142 official sources.

The People Who Changed Science with Artificial Intelligence cover

Table of Contents

The People Who Changed Science with Artificial Intelligence

Kim Kyung-jin, Attorney at Law

The Journey from Data to Nobel Prizes

This book follows eleven scientists who moved artificial intelligence into the heart of scientific discovery, from protein folding and new drug discovery to self-driving laboratories, machine scientists, automated paper reading, and the legal question of who owns a discovery made by a machine.

The Age of Autonomous Scientific Discovery cover

AI Library

The Age of Autonomous Scientific Discovery

Kim Kyung-jin, Attorney at Law

AI Scientists and Self-Driving Labs

This book follows how AI scientists and self-driving labs are changing the way science generates and verifies claims. It covers literature-based discovery, natural-language protocols translated into robot commands, multi-agent research systems, closed-loop laboratories, materials search, the verification gap, chains of evidence, research harnesses, journal ethics, and legal responsibility.

A New Era of Life Sciences Opened by Artificial Intelligence cover

AI Library

A New Era of Life Sciences Opened by Artificial Intelligence

Structural Proteomics, Genomic Foundation Models, Autonomous Laboratories, and Global Governance

Kim Kyung-jin, Attorney at Law

This book is a research volume compiled with artificial intelligence. A human selected the materials and structured the work, while AI models drafted the sentences and cross-checked the facts.

Get 1,000% More from Your Computer with AI Agents cover

Table of Contents

Get 1,000% More from Your Computer with AI Agents

Kim Kyung-jin

Twenty-four practical ways to change daily life and work with AI agents

This book shows how to get past the moments when a computer becomes difficult by working with an AI agent. It guides readers through installation and a first conversation, safe delegation, file organization and automatic backup, photo, PDF and video work, shortcuts and monitoring tools, diagnosing a slow computer, reviving an older PC, reading error messages, and putting a work environment in order.

The Double Structure of Digital Sovereignty cover

AI Library

The Double Structure of Digital Sovereignty

Europe’s Departure from Palantir and the Chains of American Big Tech

Kim Kyung-jin, Attorney at Law

This is a record of 2026, when European intelligence agencies and defense ministries began removing analytics tools from America’s Palantir. It covers the replacement decisions made by France’s General Directorate for Internal Security (DGSI), Germany’s Federal Office for the Protection of the Constitution (BfV), and the Netherlands Ministry of Defense; the incident in which US export controls severed an ally’s ac…

Artificial Intelligence in Horticulture cover

New English Edition

Artificial Intelligence in Horticulture

Kim Kyung-jin, Attorney at Law

Across five chapters and ten sections, this book examines computer vision for crop diagnosis, harvesting robots and autonomous field systems, smart greenhouses and digital twins, precision irrigation and supply-chain quality control, high-throughput phenotyping, and predictive breeding.

Artificial Intelligence in Food Crop Agriculture cover

New English Edition

Artificial Intelligence in Food Crop Agriculture

Kim Kyung-jin, Attorney at Law

Across six chapters and eighteen sections, the book examines digital agricultural infrastructure, remote sensing, crop diagnosis, yield forecasting, precision irrigation, genomics, molecular breeding, agricultural robotics, climate-smart agriculture, and global food security.

The Future of Forestry and Agroforestry cover

New English Edition

The Future of Forestry and Agroforestry

Kim Kyung-jin, Attorney at Law

Driven by Artificial Intelligence and Digital Innovation

Across five chapters and fifteen sections, the book follows satellites, drones, LiDAR, digital twins, forest-specific language models, wildfire and pest forecasting, forestry robotics, agroforestry, timber traceability, and forest carbon markets.

Smart Livestock Farming cover

New English Edition

Smart Livestock Farming: AI Enters the Barn

Kim Kyung-jin, Attorney at Law

Sensors listen, cameras watch, and artificial intelligence helps farmers decide.

Across five chapters and fifteen sections, the book follows precision livestock farming from animal health and reproduction to robotic milking, virtual fencing, digital twins, methane reduction, welfare, and data ownership.

The Paradigm Shift in AI Drug Discovery cover

Table of Contents

The Paradigm Shift in AI Drug Discovery and the Future Convergence Ecosystem

Kim Kyung-jin

From data-driven target discovery to self-driving laboratories

From finding the protein behind a disease and drawing the molecule, to screening out toxicity, replacing animal testing with organ chips, running trials on virtual patients, and settling who is liable when an AI-designed drug goes wrong. Fifteen sections across five parts, written so that no background in biology or chemistry is needed.

The Shaking Archipelago, The People Who Remember cover

Table of Contents

The Shaking Archipelago, The People Who Remember

Kim Kyung-jin

Japan's Earthquakes, Tsunamis, and Disaster Preparedness

This book follows the Nankai Trough, the 2011 Tohoku earthquake and tsunami, Mount Fuji's eruption risk, seismic observation networks, historical documents, tsunami deposits, the lesson of Onagawa Nuclear Power Station, and evacuation challenges in an aging society.

Han Dong-hoon, Busan Buk-gu Gap: A Record of the 100 Days Before and After the Election (Mar. 26-Jul. 3, 2026) cover

Table of Contents

Han Dong-hoon, Busan Buk-gu Gap: A Record of the 100 Days Before and After the Election (Mar. 26-Jul. 3, 2026)

Kim Kyung-jin

Table of Contents and 13 sections

From March 26 to July 3, 2026, this record follows the spring after expulsion, the Busan Buk-gu Gap by-election, victory as an independent, and the first bill submitted in the National Assembly.

Artificial Intelligence and Medicine cover

Table of Contents

Artificial Intelligence and Medicine

Kim Kyung-jin, Attorney at Law

AI in clinical care, hospitals, education, and research

AI in medical imaging, risk prediction, treatment planning, hospital operations, education, and research, with patient safety, privacy, and accountability.

The EU AI Act cover

Table of Contents

The EU AI Act

Kim Kyung-jin, Attorney at Law

A Practitioner’s Guide for Korean Companies

From August 2, 2026, a game company’s chatbot in Pangyo and a medical-device reading software in Busan fall under Article 50 of the EU AI Act, even without a single office in Europe. Rather than summarizing the provisions, this book reads them from the enforcement authority’s point of view: extraterritorial reach, transparency duties, general-purpose AI models, high-risk systems, and the double regulation that overlaps with Korea’s AI Framework Act. It is a field guide to what a Seoul-headquartered company must prepare, when, and how.

South Korea's AI Basic Act: A Practical Guide for Business Operators cover

Contents

South Korea’s AI Basic Act: A Practical Guide for Business Operators

Kim Kyung-jin, Attorney at Law

Compliance, Obligations, and Opportunities under Korea’s AI Regulation

On January 22, 2026, the AI Basic Act came into effect in the Republic of Korea. This book was written by an attorney for business operators. It answers questions such as “Is our service high-impact AI?”, “How should prior notification be conducted?”, and “What preparations are needed when expanding into the EU?”

Chinese Government AI Regulations cover

Contents

Chinese Government AI Regulations

Kim Kyung-jin, Attorney at Law

Chinese originals, translations, terms, issuing bodies, effective dates, administrative interpretations, and judicial materials

This edition orders Chinese AI-related laws, administrative regulations, military regulations, departmental rules, policy documents, and national standards by legal force. Each entry keeps the Chinese original text and adds an English translation or explanation, legal terms, issuing body, effective date, administrative interpretations, and judicial materials where available.

Fathers of Chinese AI cover

Table of Contents

Fathers of Chinese AI

Kim Kyung-jin, Attorney at Law

Ten lives behind China's AI ascent

This book follows Kai-Fu Lee, Robin Li, Jie Tang, Liang Wenfeng, Yang Zhilin, Yan Junjie, Wang Xiaochuan, Jingren Zhou, Shunyu Yao, and Yonghui Wu through the laboratories, companies, models, and policy environment that shaped Chinese AI.

How Far Has AI Entered Chinese Hospitals? cover

Table of Contents

How Far Has AI Entered Chinese Hospitals?

Kim Kyung-jin, Attorney at Law

A quiet shift in clinics, imaging rooms, and hospital administration

This book follows how artificial intelligence has entered Chinese hospitals, using Chinese and English materials together with original Chinese policy texts. It covers national policy, medical foundation models, clinical decision support, image reading, hospital information departments, traditional Chinese medicine, AI-native hospitals, the patient experience, hallucination and responsibility, regulation, and money. The final chapters collect major Chinese guidelines and the 84 health-sector AI application scenarios, with translated text and summaries.

Andrew Ng Biography cover

Table of Contents

Andrew Ng Biography

Kim Kyung-jin, Attorney at Law

A central figure in AI education and public learning

This book follows Andrew Ng from London, Hong Kong, Singapore, Carnegie Mellon, MIT, Berkeley, and Stanford to Google Brain, Coursera, Baidu, DeepLearning.AI, Landing AI, AI Fund, and Amazon. It reads his career through research, teaching, company building, and his practical view of AI.

Mykhailo Fedorov, Leading Figure of Ukraine's Drone War cover

Table of Contents

Mykhailo Fedorov, Leading Figure of Ukraine's Drone War

Kim Kyung-jin

From the State in a Smartphone to the Defense Ministry of the Drone War

This book follows Diia, IT Army, Starlink, UNITED24, Brave1, the Unmanned Systems Forces, drone procurement, and battlefield data to explain how Mykhailo Fedorov tied technology to state power in wartime Ukraine.

China’s Leading AI Firms and Government Agencies cover

Table of Contents

China’s Leading AI Firms and Government Agencies

Kim Kyung-jin

Policy, Companies, Data, and Hardware in China’s Intelligent Economy

This book follows China’s AI policy arc from the 2017 next-generation AI plan to AI+ and the 15th Five-Year Plan. It maps the roles of the State Council, NDRC, CAC, MIIT, and SAC, then reads DeepSeek, the AI Tigers, Alibaba, Tencent, Baidu, ByteDance, iFLYTEK, Huawei Ascend, East Data West Computing, manufacturing, education, consumption, and humanoid robotics as one connected system.

U.S. Department of War CDAO (Chief Digital and AI Officer) cover

Table of Contents

U.S. Department of War CDAO (Chief Digital and AI Officer)

Kim Kyung-jin, Attorney at Law

How the Military’s Brain Is Being Redesigned

From the moment in January 2026 when the U.S. Department of War declared data hoarding a national security threat, this book follows the birth of the CDAO (Chief Digital and Artificial Intelligence Office) and the five organizations it absorbed, Advana and the War Department Data Platform, the Open DAGIR procurement experiment, Project Maven and CJADC2 on the battlefield, and Responsible AI, allies, and critics — the story of how America is redesigning its military’s brain.

Science and Technology Commission of the CMC of the Communist Party of China cover

Table of Contents

Science and Technology Commission of the CMC of the Communist Party of China

Kim Kyung-jin

STC, Military-Civil Fusion, and China’s Military Technology Innovation

This English AI Library edition follows the CMC Science and Technology Commission, the Equipment Development Department, military-civil fusion, intelligentized warfare, emerging technology competition, and the institutional limits of China’s military innovation system.

The Chinese Communist Party School cover

Table of Contents

The Chinese Communist Party School

Kim Kyung-jin

Where Power Is Trained

This book follows the Chinese Communist Party school system from Ruijin and Yan'an to the Central Party School, the National Academy of Governance, provincial and county schools, young-official training classes, Cai Qi's leadership, and the Mwalimu Julius Nyerere Leadership School.

DARPA, America’s Defense Research Lab cover

Table of Contents

DARPA, America’s Defense Research Lab

Kim Kyung-jin

This book follows DARPA through its 2026 office reorganization, budget signals, AIxCC, AI Forge, RACER, LongShot, quantum computing, space robotics, battlefield medicine, and strategic-material programs, using official sources as the main trail.

AI and the Classroom cover

Table of Contents

AI and the Classroom

Kim Kyung-jin

The AI Teacher That Does Not Give Answers

From Estonia's AI Leap and Khanmigo to answer leakage, Korean AI digital textbooks, and teacher-in-the-loop classrooms, this book asks how AI can protect thinking instead of replacing it.

Spiderweb cover

Table of Contents

Spiderweb

Kim Kyung-jin

Ukraine's drone revolution that changed the map of war

A narrative account of Operation Spiderweb on June 1, 2025, and how Ukraine's drones reached deep inside Russia and changed military planning, intelligence work, and security assumptions.

A Map of the 2026 U.S.-China Collision cover

Table of Contents

A Map of the 2026 U.S.-China Collision

Kim Kyung-jin

The year tied in Busan and left unsolved in Beijing

A one-year map of tariffs, chips, rare earths, Taiwan, sea lanes, and Korea's choices between Washington and Beijing.

China's 2026 Power Map cover

Table of Contents

China's 2026 Power Map

Kim Kyung-jin

The completion of one-man rule, and the empty seat that follows

A map of Xi Jinping's power system, the military purge, the blocked succession path, and the economic-security dilemma.

The Architect of Contradictions cover

Table of Contents

The Architect of Contradictions

Kim Kyung-jin

Peter Thiel and the empire built by a man who hated competition

Peter Thiel, from a South African childhood to PayPal, Facebook, Palantir, politics, and the dream of defeating death.

Claude, GPT, Palantir, and the 2026 World War cover

8 readings

Claude, GPT, Palantir, and the 2026 World War

Kim Kyung-jin

How Artificial Intelligence Came to Pull the Trigger of War. Prologue, 3 Parts / 6 Chapters, Epilogue

A single name sits on the screen. An intelligence officer looks at it for twenty seconds, confirms only that it is a man, and moves on. Inside those twenty seconds a person dies, and the responsibility for deciding to kill him disappears. From Lavender over Gaza to Maven in Ukraine, Epic Furies over Iran, and target selection in the skies of Venezuela, this book follows the hand that chooses targets as it passes from human to machine in the wars of 2026.

China's Robotics Industry 2026: The Age of Mass Production and Real-World Deployment cover

25 readings

China's Robotics Industry 2026: The Age of Mass Production and Real-World Deployment

Kim Kyung-jin

From the humanoid mass-production race to U.S.-China hegemony: the state of China's robotics industry in 2026. Table of Contents, Preface, 7 Parts / 23 Chapters, Epilogue

In a factory in Shenzhen, hundreds of humanoid robots repeat the same motion. This book traces the mass-production race between Unitree and UBTECH, the Optimus supply chain, real-world deployment sites, and where Korea stands amid the U.S.-China tech hegemony.

Crossing the Adolescence of Technology Cover

15 Parts in Total

Crossing the Adolescence of Technology

Kim Kyung-jin

Dario Amodei, Anthropic, and the Struggle Toward Controllable Intelligence. Table of Contents, Preface, Prologue, 12 Chapters, Epilogue

The struggle of a physicist who lost his father to create controllable artificial intelligence. The story of Dario Amodei and Anthropic clashing with the Pentagon and the White House, shaking the era with the scaling law and Constitutional AI.

Boss, Give Yourself an AI Employee Now

Table of Contents, 43 Chapters, 11 Appendices, Epilogue

Boss, Give Yourself an AI Employee Now

Written by Kim Kyung-jin

Building an AI Automation System for Small Business Owners

37 Concrete Codex Use Cases cover

Book-style reading

37 Concrete Codex Use Cases

Kim Kyung-jin

From morning briefings to agent swarms: 37 real-world workflow automations

This guide gathers 37 ways to connect Codex and AI agents to real work: personal routines, data processing, marketing, sales, documents, development, and browser control.

2026 Beijing: The Dangerous Dance of Two Giants book cover

16 posts available

2026 Beijing: The Dangerous Dance of Two Giants

Kim Kyung-jin

Table of Contents, Introduction, 13 Chapters, Epilogue

This book reads the Beijing summit through Hormuz, rare earths, Taiwan, Boeing, soybeans, AI chips, and Korea’s exposure to the U.S.-China bargain.

Leaving It to AI and Stepping Away cover

27 posts

Leaving It to AI and Stepping Away

Kim Kyung-jin

A Complete Beginner’s Guide to YOLO Mode. Table of contents and 26 chapters

A beginner-friendly online book on YOLO mode in Claude Code and Codex. It explains how to let AI read files, write code, run commands, and finish work while keeping rollback, Docker sandboxing, and safety checks close at hand.

Artificial Intelligence Fighter, Artificial Intelligence Air Force book cover

43 posts available

Artificial Intelligence Fighter, Artificial Intelligence Air Force

Kim Kyung-jin

Table of Contents, Preface, 40 Chapters, Epilogue

Artificial Intelligence Fighter, Artificial Intelligence Air Force is an online AI Library book by Kim Kyung-jin. It covers AI fighters, autonomous air power, unmanned combat aircraft, CCA, MUM-T, sixth-generation fighters and is organized as Table of Contents, Preface, 40 Chapters, Epilogue.

Artificial Intelligence on Trial book cover

26 posts available

Artificial Intelligence on Trial

Attorney Kyungjin Kim

Table of Contents, Preface, 21 Chapters, 3 Appendices

Artificial Intelligence on Trial is an online AI Library book by Attorney Kyungjin Kim. It covers artificial intelligence and law, AI liability, algorithmic judgment, courts and technology and is organized as Table of Contents, Preface, 21 Chapters, 3 Appendices.

PALANTIR book cover

16 posts available

PALANTIR: War, Surveillance, Artificial Intelligence

Attorney Kyungjin Kim

Table of Contents, Preface, 14 Chapters

PALANTIR: War, Surveillance, Artificial Intelligence is an online AI Library book by Attorney Kyungjin Kim. It covers Palantir, war, surveillance, artificial intelligence, data analytics, national security and is organized as Table of Contents, Preface, 14 Chapters.

Brain Readers: Neuralink and the Final Human Revolution book cover

21 posts available

Brain Readers: Neuralink and the Final Human Revolution

Kim Kyung-jin

Table of Contents, Prologue, 18 Chapters, Epilogue

Brain Readers: Neuralink and the Final Human Revolution is an online AI Library book by Kim Kyung-jin. It follows Neuralink, brain-computer interfaces, brain data, medicine, neurorights, and the future of human enhancement.

Artificial Intelligence and the Reshaping of Society book cover

16 posts available

Artificial Intelligence and the Reshaping of Society

Kim Kyung-jin

Table of Contents, Preface, 13 Chapters, Epilogue

Artificial Intelligence and the Reshaping of Society is an online AI Library book by Kim Kyung-jin. It follows how artificial intelligence changes work, education, inequality, cities, democracy, and human relationships.

The Jensen Huang Story book cover

16 posts available

The Jensen Huang Story

Kim Kyung-jin

Table of Contents, Preface, 13 Chapters, Epilogue

The Jensen Huang Story is an online AI Library book by Kim Kyung-jin. It covers Jensen Huang, NVIDIA, GPUs, AI chips, and the AI industry.

Ten Questions AI Poses to Humanity book cover

12 posts available

Ten Questions AI Poses to Humanity

Kim Kyung-jin

Table of Contents, Preface, 10 Chapters

Ten Questions AI Poses to Humanity is an online AI Library book by Kim Kyung-jin. It asks how artificial intelligence changes truth, weapons, work, data, identity, and human control.

Malaysia and the Malacca Strait book cover

23 posts available

Malaysia and the Malacca Strait: Whoever Controls It Controls the World

Kim Kyung-jin

Table of Contents, Preface, 20 Chapters, Epilogue

Malaysia and the Malacca Strait is an online AI Library book by Kim Kyung-jin. It covers Malaysia, the Malacca Strait, maritime logistics, geopolitics, global trade, and Southeast Asia’s strategic future.

Georgia history and culture travel book cover

24 posts available

A Journey Through Georgia’s History and Culture

Kim Kyung-jin

Table of Contents, Preface, 17 Chapters, 4 Appendices, Epilogue

A Journey Through Georgia’s History and Culture is an online AI Library book by Kim Kyung-jin. It covers Georgia’s history, culture, religion, politics, travel, and the Caucasus crossroads between Europe and Asia.

Reading Armenia book cover

13 posts available

Reading Armenia: A Thousand Prayers, One Mountain

Kim Kyung-jin

Table of Contents, Preface, 10 Chapters, Epilogue

Reading Armenia: A Thousand Prayers, One Mountain is an online AI Library book by Kim Kyung-jin. It covers Armenian history, faith, Mount Ararat, cultural memory, travel, and the endurance of a small nation.

Mastering Claude Code book cover

41 posts available

Mastering Claude Code

Kim Kyung-jin

Table of Contents, Preface, Chapters, Appendices

Mastering Claude Code is an online AI Library book by Kim Kyung-jin. It covers Claude Code setup, commands, workflows, automation, agents, and practical methods for using Claude Code in real work.

Claude Cowork and Agent manual book cover

11 posts available

Claude Cowork and Agent Utilization Manual

Kim Kyung-jin

Table of Contents, Preface, 8 Chapters, Closing Note

Claude Cowork and Agent Utilization Manual is an online AI Library book by Kim Kyung-jin. It covers Claude Code, AI agents, coding automation, work automation, and practical agent-based collaboration.

2026 U.S.-Iran War and the Global Energy Crisis book cover

39 posts available

The 2026 U.S.-Iran War and the Global Energy Crisis

Kim Kyung-jin

Table of Contents, Preface, Chapters and Appendices

The 2026 U.S.-Iran War and the Global Energy Crisis is an online AI Library book by Kim Kyung-jin. It covers war, oil, the Strait of Hormuz, maritime security, energy markets, and the global consequences of conflict.

The Traces Han Dong-hoon Left on South Korea book cover

13 posts available

The Traces Han Dong-hoon Left on South Korea

Kim Kyung-jin

Table of Contents, Prologue, Chapters, Epilogue

The Traces Han Dong-hoon Left on South Korea is an online AI Library book by Kim Kyung-jin. It examines his record in justice policy, immigration reform, public institutions, and the structural questions facing South Korea.

The Han Dong-hoon Story book cover

39 posts available

The Han Dong-hoon Story

Kim Kyung-jin

Table of Contents, Prologue, Chapters, Epilogue

The Han Dong-hoon Story is an online AI Library book by Kim Kyung-jin. It traces Han Dong-hoon’s life, public career, political choices, and the changing landscape of South Korean conservative politics.

Beyond the Glass Ceiling cover

39 entries

Beyond the Glass Ceiling

Kim Kyung-jin

Table of contents, prologue, 31 chapters, epilogue, 5 appendices

A political biography tracing Sanae Takaichi’s rise from Nara to Japan’s premiership, through party struggles, security policy, diplomacy, and the meaning of Japan’s first female prime minister.

AI Hegemony War book cover

8 posts available

AI Hegemony War

Kim Kyung-jin

Table of Contents, 7 Chapters

An online AI Library book by Kim Kyung-jin on AI superintelligence, the U.S.-China technology race, Europe and Korea’s AI laws, and international AI governance.

Sam Altman Biography: Pioneer of the AI Revolution cover

22 posts

Sam Altman Biography: Pioneer of the AI Revolution

Kim Kyung-jin, Kim Kyung-ran

Table of contents, preface, 7 parts, 20 chapters

An online biography following Sam Altman’s childhood, startups, Y Combinator, OpenAI, ChatGPT, the 2023 board crisis, and his sense of responsibility in the AI era.

From Chaiwala to Prime Minister cover

13 entries

From Chaiwala to Prime Minister

Kim Kyung-jin

Table of contents, preface, 10 chapters, epilogue

A political biography tracing Narendra Modi from a chai-selling boy in Vadnagar to RSS organizer, Gujarat chief minister, and three-term prime minister, while reading modern India, Korea-India relations, and the risks of a rising power.

AI Classroom: Your Grades Will Change book cover

26 posts available

AI Classroom: Your Grades Will Change

Kim Kyung-jin

Table of Contents, Preface, 24 Sections

An online AI Library book by Kim Kyung-jin on how AI can support elementary, middle, and high school learning, teaching, assessment, and educational equity.

Military Artificial Intelligence cover

17 entries

Military Artificial Intelligence

Kim Kyung-jin and Kim Won-tae

Table of contents, preface, 14 chapters, epilogue

A full-length study of military artificial intelligence, from autonomous weapons, drones, command systems, logistics, and cyber defense to the strategies of the United States, China, Israel, Korea, and global defense AI companies.

Global Case Studies in Introducing AI into Public Administration book cover

25 posts available

Global Case Studies in Introducing AI into Public Administration

Kim Kyung-jin

Table of Contents, 23 Chapters, Epilogue

An online AI Library book by Kim Kyung-jin on public-sector AI adoption, national strategies, administrative services, governance, and future policy tasks.

Seven Misunderstandings About the Arctic Route book cover

10 posts available

Seven Misunderstandings About the Arctic Route

Kim Kyung-jin

Table of Contents, Preface, 7 Chapters, Epilogue

An online AI Library book by Kim Kyung-jin on seven common misunderstandings about the Arctic Route, including speed, liner service, insurance, safety rules, year-round access, carbon impact, and infrastructure.

Artificial Intelligence Election cover

14 posts

Artificial Intelligence Election

Kim Kyung-jin

Table of contents, author preface, 11 chapters, closing essay

An online book on campaign messaging, publicity materials, digital campaigning, data analysis, campaign operations, disinformation defense, legal risk, and ready-to-use prompts.

Demis Hassabis book cover

34 posts available

Demis Hassabis, Father of Google’s Artificial Intelligence

Kim Kyung-ran, Kim Kyung-jin

Table of Contents, Author’s Preface, 31 Chapters, Epilogue

Demis Hassabis, Father of Google’s Artificial Intelligence is an online AI Library book by Kim Kyung-ran, Kim Kyung-jin. It covers Demis Hassabis, Google DeepMind, artificial intelligence, AlphaGo, AI research and is organized as Table of Contents, Author’s Preface, 31 Chapters, Epilogue.

The Dhammapada 423 Verses book cover

28 posts available

The Dhammapada: 423 Verses

Kim Kyung-jin

Table of Contents, Editor’s Note, 26 Chapters, 423 Verses

An online AI Library book by Kim Kyung-jin. This edition arranges all 423 verses of the Dhammapada into 26 chapters for slow, poetic reading.

Nano Banana Pro Practical Prompt Book cover

24 posts

Nano Banana Pro Practical Prompt Book

Kim Kyung-jin

6 parts, 22 chapters, classroom prompt appendix

An online book for using Nano Banana Pro in classes and real work, covering image generation, editing, text rendering, character consistency, business use cases, and monetization.

Liberal Arts AI for College Students book cover

16 posts available

Liberal Arts AI for College Students

Kim Kyung-jin

Table of Contents, Preface, 13 Chapters, Closing Essay

An online AI Library textbook for college students. It introduces AI history, daily use, document work, research, images, presentations, video, productivity, learning, careers, copyright, and governance.

Legal Practice and Artificial Intelligence book cover

16 posts available

Legal Practice and Artificial Intelligence

Kim Kyung-jin

Table of Contents, Preface, 14 Parts

An online AI Library book by Kim Kyung-jin on legal research, drafting, evidence analysis, contract review, NotebookLM, and practical generative AI workflows for legal practice.

Hello, I Am Kim Kyung-jin book cover

10 posts available

Hello, I Am Kim Kyung-jin

Kim Kyung-jin

Table of Contents, Preface, Recommendations, 6 Chapters, Closing

An online AI Library book on Kim Kyung-jin’s life, science and technology policy, parliamentary diplomacy, legislative battles, Dongdaemun vision, and proposals for Korea’s demographic future.

Politics and People book cover

25 posts available

Politics and People

Kim Kyung-jin

Table of Contents, Prologue, 22 Chapters, Epilogue

An online AI Library book by Kim Kyung-jin on how politics begins with reading people, winning trust, keeping relationships, and enduring seasons of crisis.

When the Algorithm Gets It Wrong: AI Harms and Ethical Questions from the AIAAIC Record cover

Table of Contents

When the Algorithm Gets It Wrong: AI Harms and Ethical Questions from the AIAAIC Record

Kim Kyung-jin

What happened in hiring and welfare, courts and roads, classrooms and workplaces

AIAAIC is an international database that collects AI and algorithmic incidents from around the world. This book picks eighteen subjects from that record and follows what actually happened and why. Rejection emails that arrive at three in the morning. Debt notices for money never owed. Handcuffs in front of two small daughters. A summer reading list of books that do not exist. A driverless car that hit a child near a school. A robot arm that read a man as a box. Technical terms are explained in plain words the moment they appear, so no computing background is needed. The incidents in this book took place between 2020 and 2025. Artificial intelligence has been moving faster every day, so by today’s standards some of these cases will feel dated and even a little jarring. Nothing here is inaccurate, but please read it with that time gap in mind.

[AI Library] Chapter 1. What Is a Brain-Computer Interface?

Brain Readers: Neuralink and the Final Human Revolution
Author
Kim Kyung-jin
Date
2026-05-05 18:43
Views
1219

Brain Readers: Neuralink and the Final Human Revolution

Chapter 1. What Is a Brain-Computer Interface?

Kim Kyung-jin

Part 1: The Conversation Between Brain and Machine

A. A Universe Weighing 1.5 Kilograms: The Electrical Language of Neurons, Synapses, and Spikes

In 1889, a young anatomist named Santiago Ramon y Cajal sat before a microscope in a Madrid laboratory. Thin slices of brain tissue lay on slides in front of him. At the time, scientists believed the brain was a single continuous mesh, one connected mass.

Cajal saw something different. He spent months at that microscope and discovered a startling fact. The brain was not a single mass.

Countless independent cells were touching one another and exchanging signals. He drew these cells himself. Dendrites branching out like tree limbs. Axons trailing like long tails. Cajal sensed that these tiny cells were the source of every human thought, emotion, and memory.

His discovery came to be called the "neuron doctrine," and it became the starting point of modern brain science.

The human brain weighs between roughly 1.3 and 1.5 kilograms. It is soft like tofu, pinkish gray in color. Inside this small lump sit approximately 86 billion nerve cells, or neurons. The number alone may be hard to grasp. The estimated number of stars in our galaxy

falls somewhere between 100 billion and 400 billion. Packed inside your skull is a population of cells that rivals the number of stars in the Milky Way.

A single neuron has a complex structure. Branching out from the cell body like tree limbs are the dendrites. Dendrites act as antennas, receiving signals from other neurons. Extending from the cell body is the axon, a long projection that can stretch more than one meter. Motor neurons that run down the spinal cord to the muscles of the toes are one such example. At the tip of the axon sits the synaptic terminal, which passes the signal on to the next neuron.

The synapse. This is the brain's real secret. A synapse is the junction where two neurons meet. But neurons do not actually touch each other. Between them lies a gap smaller than 50 nanometers, roughly one ten-thousandth the width of a human hair. Across this narrow gap, a neuron releases chemical substances to deliver a message to the next neuron. These chemicals are called neurotransmitters. You may have heard names like glutamate, dopamine, and serotonin. The human brain contains roughly 100 trillion synapses. Each of the 86 billion neurons clasps hands with other neurons through thousands of these connections.

So how does a neuron generate a signal? This is where the concept of a "spike" comes in. A voltage difference exists across the neuron's cell membrane. Under resting conditions, the inside of the cell is about 70 millivolts lower than the outside. This is called the resting membrane potential. When a neuron receives enough stimulation from other neurons, ion channels in the cell membrane open. Sodium ions rush into the cell.

In an instant, the voltage flips. Negative to positive. This sudden voltage change travels down the axon like a wave. That is an action potential, or spike.

A spike is a brief event lasting between one and two milliseconds. Yet these short electrical pulses carry all the information in the brain. The fact that you are reading these words right now. The taste of what you ate for dinner last night. The worry about what you need to do tomorrow. All of it is the product of an electrical storm created by millions upon millions of neurons firing at the same time.

Neuroscientists say the language of neurons is written in two codes. One is the rate code. Information changes depending on how frequently a neuron fires spikes. When you press your hand lightly versus firmly, the firing rate of sensory neurons differs. The other is the temporal code. Information is carried by when multiple neurons fire simultaneously and in what pattern they fire. When you smell something, neurons in the olfactory bulb fire in a specific temporal pattern, and that pattern is what lets you tell a rose from jasmine.

There is a paradox here. A single neuron fires slowly. A few hundred times per second is about the limit. A modern computer processor, by contrast, performs billions of operations per second. On speed alone, the brain is no match for a computer. And yet the brain handles tasks that leave computers struggling. It reads subtle emotions. It improvises in situations it has never encountered before.

The secret is parallel processing. All 86 billion neurons work at the same time. Each one is slow on its own, but when they all compute together, they accomplish extraordinary things. And they do it on roughly 20 watts of power. Less energy than it takes to run a single fluorescent light.

BCI technology is an attempt to read this electrical language. The commands the brain sends to the body, the information the brain receives from the senses, the flow of thought happening inside the brain. All of it is written in the language of spikes. Scientists are building a dictionary for this language. They are still at an early stage. It is like a traveler who has just arrived in a foreign country and recognizes only a handful of words. But the pages of that dictionary are growing fast.

B. The Definition and Core Operating Principles of BCI

In July 2006, at a hospital in Massachusetts, a 25-year-old man named Matthew Nagle sat in front of a computer screen. Four years earlier, a stabbing had damaged his spinal cord, leaving him unable to move anything below the neck. But on that day, he moved a cursor across the screen and opened an email. Without moving a single finger. With thought alone.

Nagle had 96 microelectrodes implanted in his brain. The device was called a Utah Array, a small apparatus that looked like tiny thorns stuck in the tip of a matchstick. These electrodes detected spikes generated in his motor cortex and transmitted them to a computer. The computer analyzed those signals and converted them into commands like "move cursor left" and "click." This is the essence of a brain-computer interface, or BCI.

The definition of a BCI is simpler than you might expect. It is a system that measures brain activity and converts it into meaningful output in real time. The BCI Society defines it this way: "A technology that creates a direct communication pathway between the brain and an external device, bypassing the brain's natural output channels, namely the peripheral nerves and muscles."

Why does "bypassing" matter? In a healthy person, commands issued by the brain travel down the spinal cord and reach the muscles through nerves. That is the natural pathway. But when the spinal cord is damaged or motor neurons degenerate, as in ALS, this pathway breaks. The brain still issues the command "move the hand," but that command never reaches its destination. A BCI takes the place of the broken bridge. It intercepts the brain's commands midway and delivers them directly to a computer or a robotic arm.

The operating principle of a BCI system can be broken into five stages.

The first stage is signal acquisition. Sensors capture the electrical signals generated by the brain. Sensors can be placed on the scalp, laid on the surface of the brain after opening the skull, or inserted directly into brain tissue. The deeper the sensor goes, the clearer the signal becomes, but the risks also grow. This will be covered in detail later.

The second stage is preprocessing. The raw signal coming from the brain is full of noise. Muscle signals from blinking, interference from nearby electronic devices, the influence of the heartbeat. All of this noise must be filtered out. It is like picking out a friend's voice on a noisy street.

The third stage is feature extraction. This step finds meaningful patterns in the cleaned signal. When you try to move your right hand, a signal at a specific frequency decreases in the left motor cortex. This is called event-related desynchronization. During feature extraction, these patterns are defined mathematically and pulled from the data.

The fourth stage is decoding, or translation. This is where extracted features are converted into actual commands. "When this brainwave pattern appears, move the cursor to the right." An algorithm learns and applies rules like this. In the past, simple linear models were used, but today complex deep-learning-based AI handles the job. According to a study published in 2025, a transformer-based model achieved over 86 percent accuracy on motor imagery tasks.

The fifth stage is output and feedback. The decoded command turns into a real action. A cursor moves on screen, a robotic arm grasps an object, a wheelchair changes direction, a speech synthesizer speaks. The user then sees the result with their own eyes. That is feedback. Feedback is not just about showing a result. It is information the user's brain needs in order to learn.

This is where a key concept comes in: co-adaptation. In a BCI system, the machine isn't the only one learning. The user's brain learns too. At first, moving a cursor in the desired direction is difficult. But through repeated attempts and feedback, the brain gradually produces clearer signals. At the same time, the algorithm adjusts itself to that user's brain patterns. Person and machine adapt to each other, and performance rises.

BCIs can operate in two broad directions. A read-type BCI picks up signals from the brain and transmits them outward. A paralyzed patient controlling a computer with thought alone falls into this category. A write-type BCI does the opposite, feeding external information into the brain. The cochlear implant is the classic example. It converts sound into electrical signals

and delivers them to the auditory nerve. Research is also underway to transmit camera images directly to the visual cortex of blind patients.

As of 2025, BCI technology has moved out of laboratories and into real patients. Neuralink has implanted chips in five patients with severe paralysis. Synchron has enabled patients to operate iPads by threading electrodes through blood vessels, no craniotomy required. A research team at Columbia University developed an ultra-small chip with 65,536 electrodes and succeeded in streaming brain signals in real time. BCI is no longer science fiction. At this very moment, someone is typing letters with thought alone.

C. Classification and Comparison of Invasive, Semi-Invasive, and Non-Invasive BCIs

In 1998, a neuroscientist named Philip Kennedy found himself in a desperate situation. He had spent over 20 years researching how to decode speech from brain signals. But U.S. regulators shut down his human trials. He had no test subjects. So he made a decision.

He would implant electrodes in his own brain. No hospital in the United States would perform the surgery. He traveled to a hospital in South America. After an operation lasting eleven and a half hours, electrodes sat inside his brain. Post-surgical complications left him temporarily unable to speak, but he continued his research.

When he silently mouthed words, the electrodes in his brain recorded signals from 65 neurons in his motor cortex. The patterns matched those produced during actual speech. It was evidence that language could be decoded from thought alone.

Kennedy's story illustrates the central dilemma of BCI research: how close do you get to the brain? The closer you go, the clearer the signal, but the greater the risk.

BCIs fall into three categories based on where the sensor is placed.

Non-invasive BCIs measure signals from the surface of the scalp. You put on a device that looks like a swim cap. No surgery is needed. There is no risk of infection. The cost is relatively low. Electroencephalography, or EEG, is the best-known example. The brain's electrical activity weakens and scatters as it passes through the skull and skin, but it still carries a degree of information. The advantage of non-invasive BCIs is accessibility. Anyone can use them. They can measure focus while gaming, monitor brain states during meditation, or help prevent drowsy driving. Companies like Emotiv and Neurable already sell consumer EEG headsets.

The limitations, though, are clear. The skull is a dense layer of bone, five to ten millimeters thick. Brain signals weaken severely passing through it. High-frequency components nearly vanish. Spatial resolution drops. Thousands of neurons must fire simultaneously before the signal is detectable at the scalp. Reading individual neurons is impossible. Think of it this way: it is like standing in a stadium parking lot, listening to the roar of the crowd. You can tell something happened, but you can't make out what anyone said.

Invasive BCIs sit at the opposite end of the spectrum. The skull is opened and electrodes are inserted directly into brain tissue. Neuralink's Telepathy chip belongs to this category. Electrode threads thinner than a human hair enter the motor cortex. A total of 1,024 micro-electrodes detect individual neuron spikes directly.

The advantage of invasive BCIs is signal quality. They can read activity at the level of individual neurons. Both temporal and spatial resolution are at their highest. This degree of precision is necessary for controlling complex movements. Picking up a cup with a robotic arm and drinking water, or typing at speeds above 60 words per minute, requires an invasive approach.

The price is brain surgery. There is a risk of infection. Bleeding can occur. Over the long term, another problem emerges. The body's immune system attacks foreign objects. Scar tissue forms around the electrodes. Glial cells begin to encapsulate them. Over time, the signal weakens. This is why some electrodes in Neuralink's first patient retracted from the brain.

In between sits the semi-invasive BCI. It enters the skull but does not penetrate brain tissue. Electrocorticography, or ECoG, is the prime example: electrodes are placed on the surface of the brain. This technique has been used for decades to locate seizure origins in epilepsy patients.

Synchron's Stentrode takes an even more unusual approach. Like inserting a cardiac stent, a mesh-shaped electrode is pushed up through a vein in the neck until it reaches the brain's blood vessels. It does not puncture the brain. There is no craniotomy. Patients can go home the same day. The electrode picks up signals from the brain's surface through the vessel wall.

Semi-invasive BCIs are a compromise. The signal is clearer than non-invasive, and the risk is lower than invasive. But the precision of control falls short of what invasive systems can achieve. Synchron's patients can operate iPads and send text messages, but they cannot play complex games at the speed Neuralink's patients can.

Which approach is the right one? That depends on the goal. If the purpose is improving focus or assisting meditation, non-invasive is enough. If a fully paralyzed patient wants to move a robotic arm freely, invasive is necessary. For a patient who fears surgery but wants basic communication, semi-invasive may be the best fit.

In December 2025, a research team at Columbia University opened a new possibility. Called BISC, the device is an ultra-small chip with 65,536 electrodes. It is one-thousandth the size of existing implants. It can flex to match the curvature of the brain's surface. It is an attempt to combine invasive-level performance with semi-invasive safety. Rather than converging on a single method, BCI technology is evolving along multiple paths.

D. Why Now: How AI and Transformer Models Revolutionized Brainwave Decoding

In June 2017, a research team at Google published a paper. The title was "Attention Is All You Need." These eight researchers proposed a new architecture for natural language processing. Called the Transformer, this architecture went on to become the foundation of GPT, BERT, and ChatGPT. But what does a language model have to do with decoding brainwaves?

It turns out that brain signals and language are structurally similar. Both are continuous streams of data unfolding along a time axis. Just as earlier words in a sentence shape the meaning of later ones, earlier patterns in brain signals influence how later patterns are interpreted. Language has grammar; brain signals have rules of their own. When the brain plans a movement, executes it, and receives feedback, patterns of neural activity shift in sequence.

Older BCIs relied on manual work. Researchers defined brainwave features by hand and designed algorithms to extract them. 'If alpha-wave power between 8 and 12 hertz drops, the subject is imagining movement.' Rules like this were crafted by humans. The problem was that brain signals were too complex and too fickle. Even when the same person imagined the same action, the signal came out differently each time. Fatigue, mood, and attention level all shifted the pattern. Because every brain is structured differently, a rule that worked well for one person often failed for another. This is called 'BCI illiteracy.' Certain users simply cannot operate a BCI no matter how much they practice.

Deep learning changed the game. Starting in the mid-2010s, convolutional neural networks and recurrent neural networks were brought into brainwave analysis. These AIs learned patterns directly from raw data, without human-defined rules. Performance improved. But limitations remained. Recurrent neural networks struggled with long sequences. Convolutional neural networks were good at catching local patterns but had difficulty grasping relationships between distant parts of the data.

The core of the Transformer is the 'self-attention' mechanism. Every part of the input data connects directly to every other part. Just as a word at the very beginning of a sentence can determine the meaning of a word at the very end, a pattern from one second ago in a brain signal can affect how the current pattern is interpreted. Transformers excel at capturing these long-range dependencies.

Studies published in 2024 and 2025 turned this potential into reality. On motor imagery tasks, Transformer-based models achieved classification accuracy above 86 percent, outperforming earlier models like EEGNet. Language restoration saw dramatic progress as well. In research using ECoG to decode words from the brain signals of paralyzed patients, Transformer models generated text at speeds exceeding 62 words per minute, approaching the pace of normal conversation. Then came the emergence of 'foundation models.' Just as ChatGPT learned the structure of language from vast amounts of internet text, general-purpose models trained on massive volumes of brainwave data are being built. They go by names like EEGPT, LaBraM, and BIOT. These models learn a kind of 'grammar of brain signals' from thousands of hours of EEG data, then get fine-tuned for specific tasks. The advantage is data efficiency. Less data is needed to adapt to a new user or a new task. Calibration time for individual users shrinks.

Advances in computing power matter just as much. Transformers are computationally heavy models. Training millions of parameters requires high-performance GPUs. In the early 2010s, this kind of computation was not feasible. Today, thanks to cloud computing and specialized AI chips, even university labs can train large-scale models. Hardware caught up to support the software's progress.

The combination with generative AI is opening new possibilities as well. Large language models refine the text decoded from brain signals. They correct sentences that were incompletely decoded due to noise, adjusting them to fit the context. Even if the system can only clearly read "I want to eat a..." and the rest is unclear, the language model calculates the probability of words like "apple" or "sandwich" and fills in the blank. When paired with speech synthesis AI, the system can speak in the patient's own voice. It learns from previously recorded voice data and reproduces natural intonation.

Why now? The answer lies in the meeting of two revolutions. Hardware that reads brain signals more clearly and software that interprets those signals more accurately advanced at the same time. Electrodes got smaller and more numerous. Algorithms got smarter and faster. The two technologies are pulling each other upward. When hardware delivers more data, algorithms become more accurate; when algorithms become more accurate, software compensates for the limits of hardware. A good example came when electrodes began slipping out of Neuralink's first patient. Rather than replacing the hardware, the team modified the algorithm and restored performance.

We are standing at the very beginning of decoding the brain's language. We can barely make out a few words and sentences. But the dictionary is growing thicker, fast. Someday, brains and machines will converse in the same language. No one knows when that day will come. What is clear is that right now, we are walking in that direction.

Kim Kyung-jin

Attorney · Former Member of the National Assembly · AI Policy Researcher

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