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There are 2 ways you can go You can hook them up in series or in parallel

If you hook them up in series That is you connect the positive side of the battery to the negative side of the next battery and so on you en up with the voltage being increased by the voltage of each battery So if you hook up a 12 volt battery to the end of a 6 volt battery you end up with 18 volts.

Or you can hook them up in parallel That is you hook the abaterys together on one side going from positive to positive and on the other side negative to negative When you do this you end up with the same voltage but increase the amperage.

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Q: How do you make electrical circuits with 2 or more batteries?
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What are specialty areas in electrical engineering?

Microelectronics, digital circuits, analogue circuits, transmission lines, Radio Frequency (RF), power, high voltage, integrated circuits, computers, networking and many more.


Diff between electrical and electronics?

One definitionOne view point is that "Electrical" relates to the development and delivery of the electrical energy to the various devices that perform specific functions in a given environment. Example: The alternator in your car that series of wires delivers electrical power / energy to various components (radio, the computer that monitors / controls operation of the engine) in to-days cars. Where as "Electronics" relates more to the complex functions performed within a given device, more often now days by circuits comprised of many micro electronic sub components that make up the structure of a single micro electronic component. Example: a typical CPU chip would / could contain thousands of individual transistor circuits within a device no bigger that the size of your small finger nail with room to spare.In short: electrical circuits handle transfer of energy - electronic circuits handle transfer of informationwhat is the main difference between electrical and electronics ?In short: electrical circuits handle transfer of energy - electronic circuits handle transfer of informationRead more: http://wiki.answers.com/What_is_the_difference_between_the_terms_Electrical_and_Electronics#ixzz1RmeXS2Zv


What produces more light series or parallel circuits?

A series circuit will produce more voltage. For example, two 12 volt automotive batteries both have a 600 amp capacity. Connect the 2 batteries in series and you will have 24 volts with 600 amp capacity. Connect the 2 batteries in parallel and you will have 12 volts with 1200 amp capacity.


What would the current be if an extra battery was added to a circuit?

If you add more batteries in series, the voltage would increase. This would drastically change the circuit. Normally this should also produce more current.The effect of adding more batteries in parallel is insignificant for many circuits. Adding more batteries in parallel is like lowering a battery's internal resistance - which, for many circuits, can be neglected.Example: The battery's internal resistance can be neglected; the battery gives a voltage of 12 volt, you connect it to a resistance of 2 ohm. According to Ohm's law, that will give you a current of 6 ampere. Note that the battery capacity does not enter the calculation! Adding a second battery (of the same kind) will produce the same voltage, thus, the same current.If you add more batteries in series, the voltage would increase. This would drastically change the circuit. Normally this should also produce more current.The effect of adding more batteries in parallel is insignificant for many circuits. Adding more batteries in parallel is like lowering a battery's internal resistance - which, for many circuits, can be neglected.Example: The battery's internal resistance can be neglected; the battery gives a voltage of 12 volt, you connect it to a resistance of 2 ohm. According to Ohm's law, that will give you a current of 6 ampere. Note that the battery capacity does not enter the calculation! Adding a second battery (of the same kind) will produce the same voltage, thus, the same current.If you add more batteries in series, the voltage would increase. This would drastically change the circuit. Normally this should also produce more current.The effect of adding more batteries in parallel is insignificant for many circuits. Adding more batteries in parallel is like lowering a battery's internal resistance - which, for many circuits, can be neglected.Example: The battery's internal resistance can be neglected; the battery gives a voltage of 12 volt, you connect it to a resistance of 2 ohm. According to Ohm's law, that will give you a current of 6 ampere. Note that the battery capacity does not enter the calculation! Adding a second battery (of the same kind) will produce the same voltage, thus, the same current.If you add more batteries in series, the voltage would increase. This would drastically change the circuit. Normally this should also produce more current.The effect of adding more batteries in parallel is insignificant for many circuits. Adding more batteries in parallel is like lowering a battery's internal resistance - which, for many circuits, can be neglected.Example: The battery's internal resistance can be neglected; the battery gives a voltage of 12 volt, you connect it to a resistance of 2 ohm. According to Ohm's law, that will give you a current of 6 ampere. Note that the battery capacity does not enter the calculation! Adding a second battery (of the same kind) will produce the same voltage, thus, the same current.


How is electrical consumption measured for electronics?

Generally speaking, the electrical energy consumption of low-power electronics circuits is measured in watt.hours (W.h) whereas the energy consumption of household appliances and most other pieces of equipment, apparatus or machinery that take more power than items which only have low-power electronics circuits in them is measured in kilowatt.hours. (kW.h)

Related questions

What element is used in jewelry tableware electrical circuits and to coat glass?

Silver is used for all these. Gold could be, but silver is more likely to be used in electrical circuits and for mirrors.


Did ancient Egyptians have electric batteries?

It is not known whether the ancient Egyptians had electrical batteries, but it is known that the romans used electrical batteries on their buiilding sites. It is also known, that the ancient persians used batteries which were found by archeologists in Baghdad. To learn more visit the related link below.


For what vehicles does Lincoln Batteries make batteries?

Lincoln Batteries make batteries for all makes and models of cars. Batteries they offer include: modern batteries, classic batteries, motorcycle batteries, leisure batteries and much more.


What is meant by mutualism?

conection between two or more magnetic circuits magnetically with out any electrical connection .i.e.'flux linkages are there inbetween the magnetic circuits.


What are specialty areas in electrical engineering?

Microelectronics, digital circuits, analogue circuits, transmission lines, Radio Frequency (RF), power, high voltage, integrated circuits, computers, networking and many more.


What is meant by mutual coupling?

conection between two or more magnetic circuits magnetically with out any electrical connection .i.e.'flux linkages are there inbetween the magnetic circuits.


How are circuits connected when you are using more than one battery?

The batteries can be connected in parallel or in series. In parallel, good batteries of the same voltage will have a total voltage across them equal to the voltage across one of them. Those batteries in series will have a total voltage equal to the sum of the voltage of each of the batteries.


Why do you have to study about electrical circuits in electrical engineering?

Electrical circuits are just one aspect of electrical engineering, and a huge aspect at that. The core groupings within electrical engineering are electricity, electronics, electromagnetics, and photonics (of course there is a lot of overlap between these, as well as more sub-groupings). Electrical circuits mostly fall under the electronics category. To put it in perspective, studying EE without studying electronic circuits would be like studying chemistry without studying chemical reactions. Study or understand? if you do not understand it is best to study it. I am always studying new electrical circuit technology just to keep up with our changing world. Some say why and others say why not.


Why do circuits need complete paths?

Because the electrical elements in your circuit need more energy from the electrons rushing around .


Diff between electrical and electronics?

One definitionOne view point is that "Electrical" relates to the development and delivery of the electrical energy to the various devices that perform specific functions in a given environment. Example: The alternator in your car that series of wires delivers electrical power / energy to various components (radio, the computer that monitors / controls operation of the engine) in to-days cars. Where as "Electronics" relates more to the complex functions performed within a given device, more often now days by circuits comprised of many micro electronic sub components that make up the structure of a single micro electronic component. Example: a typical CPU chip would / could contain thousands of individual transistor circuits within a device no bigger that the size of your small finger nail with room to spare.In short: electrical circuits handle transfer of energy - electronic circuits handle transfer of informationwhat is the main difference between electrical and electronics ?In short: electrical circuits handle transfer of energy - electronic circuits handle transfer of informationRead more: http://wiki.answers.com/What_is_the_difference_between_the_terms_Electrical_and_Electronics#ixzz1RmeXS2Zv


What type of battery can be recharged?

There are many types of rechargeable batteries on the market today. Rechargeable batteries need are electrical and comprise of one or more electrochemical cells in order to be able to be recharged.


Where you use resistors?

In electrical and electronic circuits for: limiting current, developing a potential difference, biassing, controlling gain, and many more