<p>Part one Introduction</p> <p>1 Introduction to hybrid electric vehicles (HEVs), battery electric vehicles (BEVs), and off-road electric vehicles</p> <p>2 Carbon dioxide and consumption reduction through electric vehicles</p> <p>3 The market for battery electric vehicles </p> <p>4 Battery parameters for hybrid electric vehicles</p> <p>Part two Types of battery for electric vehicles</p> <p>5 Lead-acid batteries for hybrid electric vehicles and battery electric vehicles</p> <p>6 Nickel-metal hydride and nickel-zinc batteries for hybrid electric vehicles and battery electric vehicles</p> <p>7 Post lithium-ion battery chemistries for hybrid electric vehicles (HEV) and battery electric vehicles (BEV)</p> <p>8 Lithium-ion batteries for hybrid electric vehicles and battery electric vehicles</p> <p>9 High performance electrode materials for lithium-ion batteries for electric vehicles</p> <p>Part three Battery design and performance</p> <p>10 Design of high-voltage battery packs for electric vehicles</p> <p>11 High-voltage battery management systems (BMSs) for electric vehicles</p> <p>12 Cell balancing, battery state estimation and safety aspects of battery management systems (BMSs) for electric vehicles</p> <p>13 Thermal management of batteries for electric vehicles</p> <p>14 Ageing of lithium-ion batteries for electric vehicles</p> <p>15 Repurposing of batteries from electric vehicles</p> <p>16 Computer simulation for battery design and lifetime prediction</p> <p>Part four Infrastructure and standards</p> <p>17 Electric road vehicle battery charging systems and infrastructure</p> <p>18 Standards for electric vehicle batteries and associated testing procedures</p> <p>19 Licensing regulations for electric vehicles: legal requirements regarding rechargeable energy storage systems</p> <p>20 Recycling lithium batteries</p>