Once again, the current depends on what you plug into your battery. Your battery always presents 12 volts of electromotive force. If you plug in a 1 ohm load, you'll be drawing 12 amperes of current, for a total of 144 watts. If you plug in a 12 ohm load, you'll be drawing only 1 ampere of current, for a total of 12 watts. You are probably already familiar with the concept that you can run a cell-phone for a very long time from a large battery, but you might not be able to run a bright light for very long at all. The cell-phone draws only a meager current, while the light bulb draws a very large one. Current depends upon load.
Now, with that basic concept explained, I should mention that sometimes you will see current ratings on batteries. One rating might be the maximum current the battery can provide. Real batteries are not perfect, and actually have some unavoidable resistance built into them. A battery with a low resistance can deliver a much higher current than a battery with a high resistance. This is often the reason why some battery-powered devices need D cells, while others get by fine on AAA cells, even though both types provide 1.5 volts. Sometimes the D cell device needs to operate longer, and D cells certainly contain more energy. Sometimes, however, the D cell device doesn't need to last any longer than an AAA cell device, but needs to consume more power while it's operating. D cells have a lower resistance than AAA cells, and thus can deliver more power.
You will also see specifications of amp-hours. Your car battery, for example, probably is rated at somewhere between 20 and 60 amp-hours. This is not a measure of current! An amp-hour is actually related to a measure of energy storage capacity of a battery. A battery rated at 1 amp-hour can deliver one ampere for an hour, or half an ampere for two hours, or a quarter of an ampere for four hours. If you know the battery's voltage, it's a simple matter to calculate the total power content. A 12 volt battery, for example, delivers 12 watts of power when one ampere is drawn from it. If the battery is rated at 10 amp-hours, then can deliver 12 watts for 10 ten hours, and thus contains 120 watt-hours of energy.
Please ask if any of this is confusing!
- Warren