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Potential Due to a Polarized Object01:29

Potential Due to a Polarized Object

A neutral atom consists of a positively charged nucleus surrounded by a negatively charged electron cloud. When placed in an external electric field, the external electric force pulls the electrons and nucleus apart, opposite to the intrinsic attraction between the nucleus and the electrons. The opposing forces balance each other with a slight shift between the center of masses of the nucleus and the electron cloud, resulting in a polarized atom. On the other hand, a few molecules, like water,...
Group Polarization01:01

Group Polarization

Group polarization is the strengthening of an original group attitude following the discussion of views within a group (Teger & Pruitt, 1967). That is, if a group initially favors a viewpoint, after discussion the group consensus is likely a stronger endorsement of the viewpoint. Conversely, if the group was initially opposed to a viewpoint, group discussion would likely lead to stronger opposition.
Polar Coordinates: Problem Solving01:27

Polar Coordinates: Problem Solving

Directional radiation patterns are central to antenna analysis, as they illustrate how signal strength varies with direction. These patterns are often modeled using polar plots, where the radial distance from the origin represents signal intensity at a given angle. A commonly used idealized form is the four-lobed rose curve, which captures the concept of directional beams in a simplified mathematical form.The four-lobed rose curve, described by r = cos⁡(2θ), features four symmetric lobes, each...
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The Frost circle or the inscribed polygon method is a graphical method for determining the relative energies of π molecular orbitals (MOs) for planar, fully conjugated, and monocyclic compounds. This method was first described by A. A. Frost and Boris Musulin in 1953.
A Frost circle is constructed by drawing a polygon whose number of edges is equal to the number of carbons of the given cyclic system, with one of the vertices pointing down. Then, a circle is drawn enclosing the polygon so that...
Dielectric Polarization in a Capacitor01:31

Dielectric Polarization in a Capacitor

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Woodward–Hoffmann Selection Rules and Microscopic Reversibility01:34

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Electrocyclic reactions, cycloadditions, and sigmatropic rearrangements are concerted pericyclic reactions that proceed via a cyclic transition state. These reactions are stereospecific and regioselective. The stereochemistry of the products depends on the symmetry characteristics of the interacting orbitals and the reaction conditions. Accordingly, pericyclic reactions are classified as either symmetry-allowed or symmetry-forbidden. Woodward and Hoffmann presented the selection criteria for...

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Related Experiment Video

Updated: Jun 11, 2026

A Photonic System for Generating Unconditional Polarization-Entangled Photons Based on Multiple Quantum Interference
07:56

A Photonic System for Generating Unconditional Polarization-Entangled Photons Based on Multiple Quantum Interference

Published on: September 5, 2019

Implementation of trinary logic in a polarization encoded optical shadow-casting scheme.

R A Rizvi, K Zaheer, M S Zubairy

    Applied Optics
    |June 29, 2010
    PubMed
    Summary

    This study presents a novel polarization encoded optical shadow-casting (POSC) technique for designing multioutput trinary logic units. The POSC method enables efficient design and implementation of trinary adders and subtractors.

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    Area of Science:

    • Digital optics
    • Optical computing
    • Boolean logic design

    Background:

    • Traditional digital logic systems primarily use binary (two-state) representations.
    • Implementing multi-valued logic, such as trinary (three-state) logic, offers potential advantages in computational density and efficiency.
    • Optical methods provide a pathway for high-speed parallel processing, but designing complex logic units remains challenging.

    Purpose of the Study:

    • To introduce a novel polarization encoded optical shadow-casting (POSC) technique for designing multioutput trinary combinational logic units.
    • To demonstrate the application of a modified POSC algorithm for implementing logic elements in a trinary number system.
    • To provide a detailed solution for POSC logic equations to achieve input pixel coding for specific trinary arithmetic units.

    Main Methods:

    • Utilizing a polarization encoded optical shadow-casting (POSC) technique.
    • Employing a modified POSC algorithm for the design and implementation of trinary logic elements.
    • Solving POSC logic equations for a fixed source plane and decoding mask to determine input pixel coding.

    Main Results:

    • Successful design of various multioutput trinary combinational logic units using the POSC technique.
    • Demonstration of separate and simultaneous output generation for trinary logic operations.
    • Detailed input pixel coding solutions derived for trinary half-adders, full adders, and subtractors.

    Conclusions:

    • The POSC technique is a viable and effective method for designing multioutput trinary logic units.
    • The proposed approach facilitates the implementation of complex trinary arithmetic functions using optical methods.
    • This work contributes to the advancement of optical computing and multi-valued logic systems.