Technology · Editorial deck
Minds & Machines
Artificial intelligence and robotics, concept by concept
Your path through the deck
Learn it chapter by chapter.
Start with a chapter that catches your eye, or mix a few together in your round.
- 01Learning, language and perception7 cards · ~1 min
- 02Tests, games and machine reasoning4 cards · ~1 min
- 03Robots in the physical world10 cards · ~2 min
- 04People, control and imagined machines3 cards · ~1 min
Taste it
Three cards to begin.
Searchable preview
The questions inside.
01These early AI systems use a knowledge base and rules to emulate specialist decisions.RECALL
Expert SystemsExpert systems emulate human expert decisions and ranked among the first commercially successful AI applications.
Share this card ↗Source: Expert system ↗02This AI concept lets computers understand human language, powering translation tools and voice assistants.RECALL
Natural Language ProcessingNatural language processing lets computers understand human language, powering translation tools and voice assistants.
Share this card ↗Source: Natural language processing ↗03This AI concept lets machines interpret visual information, used in facial recognition and self-driving cars.RECALL
Computer VisionComputer vision lets machines interpret visual information, used in facial recognition and self-driving cars.
Share this card ↗Source: Computer vision ↗04These programs conduct conversations, from scripted exchanges to generated responses.RECALL
ChatbotsChatbots simulate conversation, ranging from simple scripted replies to advanced conversational AI.
Share this card ↗Source: Chatbot ↗05This AI concept's many-layered neural networks drove major advances in image and speech recognition.RECALL
Deep LearningDeep learning's many-layered neural networks drove major advances in image and speech recognition.
Share this card ↗Source: Deep learning ↗06Joseph Weizenbaum created this early conversational program, whose DOCTOR script imitated a psychotherapist.RECALL
ELIZAJoseph Weizenbaum created ELIZA, an early program that simulated conversation with a psychotherapist.
Share this card ↗Source: ELIZA ↗07This AI concept lets computers process spoken language, powering modern smartphone voice assistants.RECALL
Speech RecognitionSpeech recognition lets computers process spoken language, powering modern smartphone voice assistants.
Share this card ↗Source: Speech recognition ↗08Alan Turing's 1950 imitation game inspired this conversational test of machine intelligence.IDENTIFY
The Turing TestAlan Turing proposed his namesake test in 1950 to assess whether a machine can exhibit intelligent behavior.
Share this card ↗Source: Turing test ↗09This IBM chess computer defeated Garry Kasparov in a six-game match in 1997.RECALL
Deep BlueIBM's Deep Blue became the first chess computer to beat a reigning champion, defeating Garry Kasparov in 1997.
Share this card ↗Source: Deep Blue (chess computer) ↗10This IBM question-answering system defeated Ken Jennings and Brad Rutter on Jeopardy! in 2011.IDENTIFY
IBM WatsonIBM's Watson defeated top human Jeopardy! champions in a landmark 2011 competition.
Share this card ↗Source: Watson (computer) ↗11This DeepMind program defeated Go champion Lee Sedol in a five-game match in 2016.RECALL
AlphaGoAlphaGo defeated a world champion Go player, a landmark achievement given the game's immense complexity.
Share this card ↗Source: AlphaGo ↗12This AI concept combines mechanical, electrical, and computer engineering to design and build robots.RECALL
RoboticsRobotics combines mechanical, electrical, and computer engineering to design and build robots.
Share this card ↗Source: Robotics ↗13This AI concept performs tasks with minimal human input and has transformed manufacturing since the Industrial Revolution.RECALL
AutomationAutomation performs tasks with minimal human input and has transformed manufacturing since the Industrial Revolution.
Share this card ↗Source: Automation ↗14These vehicles use sensors and software to perform driving tasks without a human driver within their operating conditions.RECALL
Self-Driving CarsSelf-driving cars navigate without human input using a combination of sensors, cameras, and AI software.
Share this card ↗Source: Self-driving car ↗15These programmable manufacturing machines perform tasks such as welding, painting and assembly.RECALL
Industrial RobotsIndustrial robots automate repetitive manufacturing tasks like welding, painting, and assembly.
Share this card ↗Source: Industrial robot ↗16These aircraft fly without an onboard pilot, remotely controlled or autonomously.RECALL
DronesDrones fly without an onboard pilot, used for tasks from photography to package delivery.
Share this card ↗Source: Unmanned aerial vehicle ↗17These autonomous floor-cleaning appliances navigate around furniture using sensors.RECALL
Robotic VacuumsRobotic vacuums clean autonomously, using sensors to navigate around furniture and other obstacles.
Share this card ↗Source: Robotic vacuum cleaner ↗18Isaac Asimov's fictional rules place human safety above obedience, and obedience above a robot's self-preservation.IDENTIFY
Asimov's Three Laws of RoboticsIsaac Asimov introduced his fictional Three Laws of Robotics to govern how robots should behave.
Share this card ↗Source: Three Laws of Robotics ↗19These artificial replacements for missing body parts can incorporate sensors and powered movement.RECALL
ProstheticsProsthetics replace missing body parts and increasingly incorporate robotics and sensor feedback.
Share this card ↗Source: Prosthesis ↗20These wearable external frames assist strength or mobility.RECALL
ExoskeletonsExoskeletons enhance physical strength or mobility, used in rehabilitation, industry, and military settings.
Share this card ↗Source: Powered exoskeleton ↗21These robots have bodies shaped to resemble humans.RECALL
Humanoid RobotsHumanoid robots mimic the human body's shape and movement, helping study natural interaction and motion.
Share this card ↗Source: Humanoid robot ↗22This AI concept, named by Masahiro Mori, describes discomfort toward robots that look almost human.RECALL
The Uncanny ValleyThe uncanny valley, named by Masahiro Mori, describes discomfort toward robots that look almost human.
Share this card ↗Source: Uncanny valley ↗23This AI concept studies control and communication across animals and machines, laying groundwork for AI and robotics.RECALL
CyberneticsCybernetics studies control and communication across animals and machines, laying groundwork for AI and robotics.
Share this card ↗Source: Cybernetics ↗24This AI concept studies how people use technology, shaping the everyday interfaces we rely on.RECALL
Human-Computer InteractionHuman-computer interaction studies how people use technology, shaping the everyday interfaces we rely on.
Share this card ↗Source: Human–computer interaction ↗
Ready when you are
Flip the first card.
Study at your pace, or test what stayed with you. Your local progress is saved as you go.