High voltages are necessary for transmission/distribution of electrical energy because, for a given load, the higher the voltage, the lower the resulting load current -which means that voltage drops along the lines can be maintained realistically low (amongst other advantages). A.C. is, therefore, more prevalent because its voltage levels can be changed easily and very efficiently using Transformers. Transformers will not work with d.c.
The generated voltage in a power station is AC voltage, not DC. So, it is never converted to AC, because it is already AC.
AC is preferred in distribution due to the economy, efficiency, and reliability of transformers.
AC is pretty much the standard anywhere, not just in India. For distribution of electric power, AC has a clear advantage over DC in that it can easily be transformed to higher or lower voltages, and can be generated easily (since most generators lend themselves more directly to the generation of AC).In electricity distribution, DC plays a growing role in the past few decades because electronic circuitry can now support high-energy DC systems. These are sometimes used for very long haul electricity distribution (famously in South Africa and Russia); their advantage is that DC makes better use of the cable diameter (no skin effect).
No. Transformers work in AC systems, not in DC systems.
The advantages of alternating current (AC) over direct current (DC) were primarily championed by Nikola Tesla in the late 19th century. Tesla's work on AC systems, including the development of the induction motor and transformer, demonstrated its efficiency for long-distance electricity transmission. His ideas were crucial in the "War of Currents," where AC ultimately became the dominant form of electrical power distribution, largely due to its ability to be easily transformed to different voltages.
AC is preferred over DC in most electrical power distribution systems because it is easier and more cost-effective to generate, transmit, and distribute over long distances. AC can be easily converted to different voltage levels using transformers, making it more efficient for power distribution. Additionally, AC allows for the use of alternating current motors, which are more reliable and cost-effective than DC motors for industrial applications.
AC used in power distribution systems because it is easy to transform it to a higher voltage for transmission (more efficient) and later to transform it to any other level required. Even when it enters the house we might find the level is too high and we use a built-in transformer for example for the transistor radio.
wiki answers is useless. Be more specific as to what you are asking for such as, the AC electrical ciruit, AC Components and location, Duct work/distribution, Temp blending, Vacuum circuit, AC specifications, etc.
AC current is considered better than DC current for electrical power distribution and transmission because it can be easily converted to different voltage levels using transformers, allowing for efficient long-distance transmission. Additionally, AC current is able to travel over long distances with minimal power loss, making it more practical for widespread distribution of electricity.
The generated voltage in a power station is AC voltage, not DC. So, it is never converted to AC, because it is already AC.
Alternating current is not necessairly low voltage, on the controrary AC is more oftenly used for when high voltage is needed. Most power distribution systems (extremely high voltages) use AC because AC is easier to transform to high voltages (using the aptly named transformer). High voltage is needed for power distribution to decreases losses due to transmission.
AC is better than DC for power transmission and distribution because it can be easily converted to different voltages using transformers, allowing for efficient long-distance transmission with minimal power loss. Additionally, AC can be easily generated and distributed in large power grids, making it more practical and cost-effective for widespread use.
Edison tried to prove that alternating current (AC) was dangerous by publicly electrocuting animals with AC currents. He held demonstrations where he electrocuted animals, such as cats and dogs, to show that AC current was more lethal than his preferred direct current (DC). This was part of his campaign to discredit AC and promote DC as the safer option for electrical distribution.
AC is preferred in distribution due to the economy, efficiency, and reliability of transformers.
Possibly distribution, as it seems that a c was distributed to the a and the b.
The Furnace fan is used to assist the AC in doing its job It is not heating at all just air distribution.
"all-commodity volume weighted distribution" It is a commonly accepted measure of product distribution. It is the basis for most retail distribution measures by AC Nielsen & IRI.