An electric car battery stores 75 kWh of energy. If the car consumes energy at a rate of 0.25 kWh per kilometer, how far can it travel on a full charge?

["How Far Can an Electric Car Travel on a Full Charge?", "Electric vehicles (EVs) are revolutionizing transportation with their eco-friendly and cost-efficient advantages. A key factor determining an EV’s performance is its battery capacity — specifically, how much energy the battery stores and how efficiently the car uses that power.", "Let’s explore a practical example: an electric car equipped with a 75 kWh battery. If the vehicle consumes energy at a steady rate of 0.25 kWh per kilometer, we can calculate the distance the car can travel on a full charge with simple math.", "### Calculating Distance on a Full Charge", "To find out how far the car can travel, divide the total battery energy by the energy consumption rate:", "[\n\ ext{Distance} = \frac{\ ext{Battery Energy}}{\ ext{Energy Consumption per Kilometer}} = \frac{75\ \ ext{kWh}}{0.25\ \ ext{kWh/km}} = 300\ \ ext{kilometers}\n]", "### Summary", "- Battery capacity: 75 kWh\n- Energy consumption: 0.25 kWh/km\n- Maximum range: 300 kilometers", "This means the electric car can drive 300 km before needing a recharge — a significant advantage for daily commutes, road trips, and reducing reliance on fossil fuels.", "### Bonus Insight", "Battery efficiency, driving conditions, terrain, and speed all affect actual range. Modern EVs often feature adaptive energy management systems to optimize consumption and maximize real-world travel distance.", "---", "If you’re considering an electric vehicle, a 75 kWh battery offers impressive range for many users. With efficient energy use — like the 0.25 kWh/km consumption in this example — this car can easily handle long distances while supporting sustainable travel."]








