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Introduction to force01:25

Introduction to force

Consider water flowing from a nozzle to a turbine vane. As the water hits the turbine vane, it exerts a force that causes it to move along the flow of direction. Force is an impact that changes an object's motion, shape, or orientation. Forces can be caused by physical contact, such as a push or pull, or through non-contact interactions, such as magnetic or gravitational forces. Force is a vector quantity with both magnitude and direction, and is measured in newtons (N) in the SI unit system.
An Introduction to Mechanics01:28

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Related Experiment Video

Updated: Jun 23, 2026

Micro-scale Engineering for Cell Biology
04:42

Micro-scale Engineering for Cell Biology

Published on: October 1, 2007

Introduction.

J Haus

    Optics Express
    |April 22, 2009
    PubMed
    Summary
    This summary is machine-generated.

    Photonic crystals, periodic dielectric structures, offer solutions in optoelectronics and RF detection. Their complex dynamics require advanced computational methods for effective design and problem-solving.

    Related Experiment Videos

    Last Updated: Jun 23, 2026

    Micro-scale Engineering for Cell Biology
    04:42

    Micro-scale Engineering for Cell Biology

    Published on: October 1, 2007

    Area of Science:

    • Condensed matter physics
    • Optoelectronics
    • Electromagnetics

    Background:

    • Photonic crystals are periodic dielectric structures with applications in optoelectronics and RF detection.
    • These structures exhibit unique optical properties due to their periodic variations.

    Purpose of the Study:

    • To highlight the potential of photonic crystals in addressing challenges in optoelectronics and RF detection.
    • To emphasize the need for advanced computational techniques in designing photonic crystal structures.

    Main Methods:

    • Numerical simulations
    • Computational electromagnetics
    • Analysis of field dynamics

    Main Results:

    • Photonic crystals demonstrate promise for technological solutions in specific fields.
    • Complex field dynamics within these structures necessitate sophisticated computational approaches.

    Conclusions:

    • Photonic crystals are valuable for optoelectronic and RF applications.
    • Numerically intensive computations are crucial for photonic crystal design and problem-solving.