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  2. Discrete Fourier transform - Wikipedia

    en.wikipedia.org/wiki/Discrete_Fourier_transform

    Eq.1 can also be evaluated outside the domain [,], and that extended sequence is -periodic.Accordingly, other sequences of indices are sometimes used, such as [,] (if is even) and [,] (if is odd), which amounts to swapping the left and right halves of the result of the transform.

  3. Superposition principle - Wikipedia

    en.wikipedia.org/wiki/Superposition_principle

    Because physical systems are generally only approximately linear, the superposition principle is only an approximation of the true physical behavior. The superposition principle applies to any linear system, including algebraic equations, linear differential equations, and systems of equations of those forms.

  4. Die (integrated circuit) - Wikipedia

    en.wikipedia.org/wiki/Die_(integrated_circuit)

    A die can host many types of circuits. One common use case of an integrated circuit die is in the form of a central processing unit (CPU). Through advances in modern technology, the size of the transistor within the die has shrunk exponentially, following Moore's law.

  5. Torricelli's law - Wikipedia

    en.wikipedia.org/wiki/Torricelli's_law

    Every physical theory must be verified by experiments. The spouting can experiment consists of a cylindrical vessel filled up with water and with several holes in different heights. It is designed to show that in a liquid with an open surface, pressure increases with depth. The fluid exit velocity is greater further down the vessel. [2]

  6. Physical design (electronics) - Wikipedia

    en.wikipedia.org/wiki/Physical_design_(electronics)

    In integrated circuit design, physical design is a step in the standard design cycle which follows after the circuit design.At this step, circuit representations of the components (devices and interconnects) of the design are converted into geometric representations of shapes which, when manufactured in the corresponding layers of materials, will ensure the required functioning of the components.

  7. Electrostatics - Wikipedia

    en.wikipedia.org/wiki/Electrostatics

    where = is the distance of each charge from the test charge, which situated at the point , and () is the electric potential that would be at if the test charge were not present. If only two charges are present, the potential energy is Q 1 Q 2 / ( 4 π ε 0 r ) {\displaystyle Q_{1}Q_{2}/(4\pi \varepsilon _{0}r)} .

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