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  2. Adder (electronics) - Wikipedia

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

    An adder, or summer, [1] is a digital circuit that performs addition of numbers. In many computers and other kinds of processors , adders are used in the arithmetic logic units (ALUs). They are also used in other parts of the processor, where they are used to calculate addresses , table indices , increment and decrement operators and similar ...

  3. RLC circuit - Wikipedia

    en.wikipedia.org/wiki/RLC_circuit

    The tuning application, for instance, is an example of band-pass filtering. The RLC filter is described as a second-order circuit, meaning that any voltage or current in the circuit can be described by a second-order differential equation in circuit analysis. The three circuit elements, R, L and C, can be combined in a number of different ...

  4. LC circuit - Wikipedia

    en.wikipedia.org/wiki/LC_circuit

    The two-element LC circuit described above is the simplest type of inductor-capacitor network (or LC network). It is also referred to as a second order LC circuit [1] [2] to distinguish it from more complicated (higher order) LC networks with more

  5. Electrical resonance - Wikipedia

    en.wikipedia.org/wiki/Electrical_resonance

    The RLC filter is described as a second-order circuit, meaning that any voltage or current in the circuit can be described by a second-order differential equation in circuit analysis. The three circuit elements can be combined in a number of different topologies. All three elements in series or all three elements in parallel are the simplest in ...

  6. Second-order logic - Wikipedia

    en.wikipedia.org/wiki/Second-order_logic

    The fragment of second-order logic consisting only of existential second-order formulas is called existential second-order logic and abbreviated as ESO, as , or even as ∃SO. The fragment of Π 1 1 {\displaystyle \Pi _{1}^{1}} formulas is defined dually, it is called universal second-order logic.

  7. Arithmetic circuit complexity - Wikipedia

    en.wikipedia.org/wiki/Arithmetic_circuit_complexity

    A circuit has two complexity measures associated with it: size and depth. The size of a circuit is the number of gates in it, and the depth of a circuit is the length of the longest directed path in it. For example, the circuit in the figure has size six and depth two. An arithmetic circuit computes a polynomial in the following natural way.

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