Ideal filters having sharp cut-off & sharp cut-in for LPF & HPF
but in practical filters there is some roll-off rate based on the order.
Ima is Ideal Mechanical Advantage and Ama is Actual Mechanical Advantage. The difference is that IMA doesn't take into account elasticity or friction and AMA does.
An omnidirectional antenna can be practically implemented but an isotropic antenna cannot be implemented practically. An isotropic antenna resembles an ideal antenna with ideal values for all parameters.
The very word ideal means somehow far away from practical. Pracitically, there would be friction. So in case of ideal mechanical advantage, frictional force is neglected.
Ideal FluidsIn compressibleIt has zero viscosityNo resistance is encountered as the fluid movesReal FluidsCompressibleViscous in natureCertain amount of resistance is always offered by these fluids as they move
Ideal Machine
Ideal sources are ones that would be the first choice if one could choose a source. A practical source is one that is readily available and reliable.
Zener diode is heavily doped pn junction diode.
What is the difference between ideal and actual cycle?
The ideal age difference should be between 4 and 7.
The level to which the ideal is enforced
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The difference between ideal and reciprocal altruism is in one, the person expects nothing in return. In reciprocal altruism, the person expects something back at some point.
Ideal transformer is useful in understanding the practical transformer..i does't have losses...
Conveniently is an adverb meaning in a way that is ideal or not difficult. A convenience is a noun meaning an ideal quality or situation.
KMT talks about the properties of real gases while ideal gas laws discuss only the ideal gases..
no
An ideal voltage source is a theoretical concept used in electrical engineering and circuit analysis. It is a voltage source that maintains a constant voltage output regardless of the current flowing through it or the load connected to it. In other words, an ideal voltage source has zero internal resistance and can supply infinite current at a constant voltage. In contrast, a practical voltage source is a real-world device that has internal resistance and cannot maintain a constant voltage output when a load is connected to it. The voltage output of a practical voltage source will decrease as the current flowing through it increases, due to the internal resistance of the source. As a result, the voltage across the load will be less than the voltage output of the source, and the difference is known as the voltage drop. In practical applications, it is important to take into account the limitations of practical voltage sources and design circuits that can operate within these limitations. An understanding of the behavior of both ideal and practical voltage sources is essential for designing efficient and effective electrical circuits. You also read more at electronicsinfos. com