World 101 The living map
Electric Vehicles
Loading the map. The links below remain available.
Electric Vehicles
Follow a field, explore its subjects, then travel their connections.
Explore by name
Technology
Electric Vehicles
The End of the Engine as We Knew It
Also known as EV, electrically-powered vehicle
An electric vehicle, or EV, runs on a big rechargeable battery instead of burning gas in an engine. Switching over sounds clean, but it reshuffles power and money, which makes it a Politics story about who wins and loses when oil fades. It also reshapes cities and roads, tying it to the Arts and how we design the space we live in. And it raises hard Environment questions of justice, because the metals inside those batteries are dug from mines that often sit in poorer communities.
Sources: Wikipedia
Put your curiosity to work
Careers in Electric Vehicles
Roles today
-
EV Powertrain Engineer
Designs and optimizes the electric motor, battery, and power electronics systems for vehicle propulsion.
Skills to build
- MATLAB/Simulink
- Battery Management Systems (BMS)
- Power Electronics
- CAD software
-
Battery Engineer
Focuses on the development, testing, and integration of battery cells and packs for electric vehicles.
Skills to build
- Electrochemistry
- Thermal Management
- Cell Characterization
- Material Science
-
Charging Infrastructure Engineer
Plans, designs, and implements EV charging networks, ensuring grid integration and user accessibility.
Skills to build
- Grid Integration
- Power Distribution
- OCPP
- AutoCAD
- Project Management
-
Automotive Software Engineer (EV)
Develops embedded software for EV control units, infotainment, and advanced driver-assistance systems.
Skills to build
- C/C++
- AUTOSAR
- CAN bus
- Embedded Linux
- Functional Safety (ISO 26262)
-
Manufacturing Engineer (EV)
Optimizes production processes for electric vehicle components and assembly lines, ensuring efficiency and quality.
Skills to build
- Lean Manufacturing
- Robotics
- Process Automation
- Quality Control
- CAD/CAM
Emerging roles
-
Vehicle-to-Grid (V2G) Integration Specialist
Develops systems and strategies for EVs to interact with and support the electrical grid, enhancing energy resilience.
Skills to build
- Smart Grid Technologies
- Energy Management Systems
- Communication Protocols (e.g., ISO 15118)
- Data Analytics
-
EV Battery Recycling Specialist
Designs and implements processes for the sustainable end-of-life management and material recovery of EV batteries.
Skills to build
- Hydrometallurgy
- Pyrometallurgy
- Circular Economy Principles
- Hazardous Waste Management
-
Autonomous EV Systems Engineer
Integrates self-driving capabilities and perception systems specifically for electric vehicle platforms.
Skills to build
- Sensor Fusion
- ROS
- Machine Learning (for perception)
- ADAS
- Functional Safety
Where subjects meet
-
EV Policy Analyst
Advises governments and industry on regulations, incentives, and market structures to accelerate EV adoption.
Skills to build
- Policy Analysis
- Economic Modeling
- Stakeholder Engagement
- Regulatory Compliance
- Public Affairs
-
Urban E-mobility Planner
Integrates EV charging infrastructure and sustainable mobility solutions into urban planning and smart city initiatives.
Skills to build
- GIS
- Urban Planning Software
- Sustainable Transport Planning
- Public Consultation
- AutoCAD
-
EV Equity & Access Program Manager
Develops initiatives to ensure equitable access to electric vehicles and charging infrastructure in underserved communities.
Skills to build
- Community Engagement
- Grant Writing
- Social Impact Assessment
- Program Management
- Policy Advocacy
-
Location Tracking and Surveillance ↗
Fleet Telematics Specialist (EV)
Manages and optimizes electric vehicle fleets using real-time location data and performance analytics for efficiency.
Skills to build
- GPS/GNSS
- IoT Platforms
- Data Analytics
- Route Optimization Software
- Cybersecurity (for data privacy)
Find your direction
Compare the choices that shape this path. There is no score or single right answer.
-
Do you want to build the electric vehicles themselves, or the world they drive in?
Both paths are crucial for the future of electric transport, but require different technical expertise.
-
Will you join a fast-paced startup, or an established auto giant?
Startups offer agility, while established companies offer resources and scale.
-
Do you want to master one specific EV component, or understand how the whole vehicle works?
Both roles are vital, but one requires intense focus, the other a wide-angle view.
-
Are you passionate about electric cars for everyone, or electrifying other types of transport and machinery?
The core technology is similar, but the design challenges, regulations, and market demands are quite different.
Where to study Electric Vehicles
Institutions and programmes to explore. Check each institution’s current programme and entry requirements before applying.
Indian Institute of Technology Bombay (IIT Bombay)
IndiaB.Tech/M.Tech in various Engineering disciplines
A foundational institution for engineering talent in India, offering robust programs and strong industry connections.
Indian Institute of Technology Delhi
IndiaB.Tech/M.Tech in various Engineering disciplines
Strategically located in the capital, it provides a blend of academic rigor and exposure to policy and innovation ecosystems.
Birla Institute of Technology & Science, Pilani
IndiaB.E./M.E. in various Engineering disciplines
Known for its flexible academic structure and strong alumni network, fostering entrepreneurial spirit and technical depth.
Massachusetts Institute of Technology (MIT)
GlobalBS/MS/PhD in various Engineering fields
The global benchmark for technological innovation and research, attracting top minds and shaping future industries.
Stanford University
GlobalBS/MS/PhD in various Engineering fields
Nestled in Silicon Valley, it offers unparalleled access to tech giants and a culture of disruptive innovation.
University of California, Berkeley
GlobalBS/MS/PhD in various Engineering fields
A public institution with private university caliber, renowned for its pioneering research and impact on global technology.
Georgia Institute of Technology (Georgia Tech)
GlobalBS/MS/PhD in various Engineering fields
Offers strong technical programs with a focus on practical application, making its graduates highly sought after in industry.
ETH Zurich
GlobalBSc/MSc/PhD in various Engineering fields
A European powerhouse in science and technology, providing world-class education at a remarkably accessible tuition cost.
Vellore Institute of Technology (VIT)
IndiaB.Tech (CSE / relevant branch)
A large, placement-strong private engineering school with broad B.Tech options.
SRM Institute of Science and Technology
IndiaB.Tech (CSE / relevant branch)
Big private tech campus with wide engineering + research options.
Shiv Nadar University
IndiaB.Tech
Small-cohort, research-oriented engineering.
Watch
- The surprisingly long history of electric cars - Daniel Sperling and Gil Tal ↗TED-Ed
- Why China is winning the EV war ↗Vox
- China’s booming EV industry | BBC News ↗BBC News
- The Chinese car company beating Tesla | The Global Story ↗BBC News
- EV battery manufacturing - Why Europe can’t keep up with China | DW Documentary ↗DW Documentary
- Tesla and Elon Musk - the future of electric cars | DW Documentary ↗DW Documentary
Read
- The Car That Could: The Inside Story of GM's Revolutionary Electric Vehicle ↗A compelling narrative of the early, ill-fated attempts by General Motors to launch an electric vehicle, offering crucial lessons on innovation and market resistance.Michael Shnayerson
- Power Play: Tesla, Elon Musk, and the Bet of the Century ↗An incisive account of Tesla's tumultuous rise, detailing how a disruptive startup reshaped the automotive industry and accelerated the electric transition.Tim Higgins
- Electrify: An Optimist's Playbook for Our Clean Energy Future ↗A persuasive argument for the comprehensive electrification of society, positioning electric vehicles as a cornerstone of a sustainable energy future.Saul Griffith
- The Race for a New Superbattery ↗Explores the historical quest and ongoing technological race to develop more efficient and powerful batteries, the linchpin of electric vehicle performance.David Kirsch
- Global EV Outlook 2023: Trends and ProspectsAn authoritative annual survey charting the global trajectory of electric vehicle adoption, policy, and technological advancements, essential for understanding market dynamics.International Energy Agency (IEA)
Voices to follow
- Sandy Munro ↗His meticulous teardowns offer unparalleled insights into the engineering and manufacturing prowess, or pitfalls, of electric vehicles.Automotive Engineering Consultant, Munro & Associates
- JB Straubel ↗A foundational figure in electric vehicle development, he now champions sustainable battery materials and recycling, addressing a critical bottleneck for the industry.Founder and CEO, Redwood Materials; Co-founder, Tesla
- Gabe Nelson ↗As a seasoned automotive journalist, he provides incisive analysis of the electric vehicle market, policy shifts, and technological trends for a global audience.Automotive Journalist, Bloomberg News
Glossary
- Battery Electric Vehicle (BEV)A Battery Electric Vehicle, or BEV, is a type of Electric Vehicle that runs only on electricity stored in a large battery and has no petrol engine at all. For example, a Tesla car is a BEV because it needs to be plugged in to charge its battery and doesn't use any fuel.
- Battery PackThe Battery Pack is the large collection of many individual battery cells that stores the electricity to power an Electric Vehicle's motor. It's the "fuel tank" for an EV. For example, the battery pack in an electric car is usually located under the floor and determines how far the car can travel on a single charge.
- Charging CableA Charging Cable is the special cord that connects an Electric Vehicle to a charging station or a wall outlet to transfer electricity into its battery. It's designed to safely handle the power needed for charging. For example, you use a charging cable to plug your electric scooter into a wall socket at home, just like you charge your phone.
- Charging StationA Charging Station is a special place or device where you can plug in an Electric Vehicle to refill its battery with electricity. It's like a petrol pump, but for electric cars. For example, you might find a charging station in a mall parking lot or at a dedicated EV charging hub where you connect your car to get power.
- Charging TimeCharging Time is how long it takes to fully recharge an Electric Vehicle's battery from empty to full, or to a usable level. This time can vary a lot depending on the charger and the car's battery size. For example, a fast charger might fill an EV battery in 30 minutes, while a home charger could take several hours overnight.
- Electric MotorAn Electric Motor is the part of an Electric Vehicle that converts electrical energy from the battery into mechanical energy, which then turns the wheels and makes the vehicle move. It's the equivalent of an engine in a petrol car. For example, when you press the accelerator in an EV, the electric motor instantly uses power from the battery to spin the wheels and accelerate the car.
- Electric Vehicle (EV)An Electric Vehicle, or EV, is a type of car, scooter, or bus that uses one or more electric motors for power instead of a traditional engine that burns fuel like petrol or diesel. For example, an electric scooter you ride to school is an EV because it runs on a battery and an electric motor.
- Hybrid Electric Vehicle (HEV)A Hybrid Electric Vehicle, or HEV, uses both a traditional petrol engine and an electric motor to power the car. It switches between them or uses both together to save fuel, but you don't plug it in to charge. For example, some Toyota Prius models are HEVs that use their petrol engine to help charge the battery and also to drive the wheels.
- Kilowatt-hour (kWh)A Kilowatt-hour, or kWh, is a unit used to measure the amount of energy stored in an Electric Vehicle's battery, or how much electricity it uses. A higher kWh number means the battery can store more energy. For example, if an EV has a 60 kWh battery, it means its battery can hold 60 units of electrical energy, which affects its range.
- RangeRange is the total distance an Electric Vehicle can travel on a single full charge of its battery before it needs to be recharged. For example, if an EV has a range of 300 kilometers, it means you can drive it for about 300 km before the battery runs out.
- Regenerative BrakingRegenerative Braking is a clever system in Electric Vehicles that captures energy normally lost as heat when you slow down or brake, and converts it back into electricity to recharge the battery. It's like getting a little bit of free power every time you stop. For example, when you lift your foot off the accelerator in some EVs, you can feel the car slowing down while also putting energy back into the battery.
Threads 5
Where this connects to other fields, and why it's worth knowing.
- Political Economy Political Science
Ditching gas engines yanks power away from oil-rich countries and hands it to the few nations sitting on lithium, cobalt, and copper for batteries. Going electric doesn't just change cars; it changes which governments the whole world has to keep happy.
- Architecture & Urban Design Arts & Design
For a hundred years, towns were built around the gas station on the corner. Now that electric cars are killing the pump, thousands of those corner lots are left behind, their soil soaked with old fuel. Cities have to figure out what a neighborhood even looks like when nobody needs gas.
- Perception & Attention Psychology
Electric cars are so quiet that the law forces them to play fake engine sounds through speakers. Why? Because people, especially those who can't see, cross the street by listening for a car, not just looking. Silence turned out to be dangerous, so we had to add noise back in on purpose.
- Environmental Justice Environment
An electric car has no tailpipe, but it doesn't erase pollution so much as move it. The dirty part shifts to the mines where its battery metals are dug up. Clean air on a rich city street, poisoned ground near a poor mining town.
- Location Tracking and Surveillance Geography
Gas taxes pay for a lot of our roads, but electric cars buy no gas. So governments are eyeing a charge for every mile you drive instead. To bill you per mile, they'd have to track every trip you take.
