Physics-based Simulations

Physics-based simulations are computational models that reproduce the behavior of physical systems by applying established laws of physics, making it possible to study designs and conditions before building physical prototypes. They represent materials, geometry, forces, energy, and boundary conditions, then use numerical methods to solve governing equations over space and time. In engineering, these simulations support structural, fluid, thermal, electromagnetic, and multiphysics analysis, helping researchers predict performance, identify failure risks, and compare design alternatives. By reducing reliance on costly experiments while complementing validation tests, they accelerate optimization and improve understanding of complex systems.

Physics-based Simulations - Related Videos

Research

JoVE Journal - Engineering

Visualizing Hyporheic Flow Through Bedforms Using Dye Experiments and Simulation

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Cited by 4 •

2015

This manuscript describes how to create regular bedforms in a flume, visualize flow through the bedforms, and use computer simulations to simulate the hyporheic flow. The computer simulations compare well with the experimental observations. This coupled simulation and experiment is well-suited for both research and educational purposes.

Education

JoVE Science Education - Clinical Skills

General Approach to the Physical Exam

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2023

Source: Jaideep S. Talwalkar, MD, Internal Medicine and Pediatrics, Yale School of Medicine, New Haven, CT The examination of the body is fundamental to the practice of medicine. Since the Roman Empire, physicians have described the connection between alterations in function of specific parts of the body and specific disease states and have sought to further scientific understanding to improve bedside diagnosis. However, in this modern age of increasing technology within medical diagnostics, it...

Research

JoVE Journal - Neuroscience
Free Sample

MPI CyberMotion Simulator: Implementation of a Novel Motion Simulator to Investigate Multisensory Path Integration in Three Dimensions

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Cited by 48 •

2012

An efficient way to gain insight into how humans navigate themselves in three dimensions is described. The method takes advantage of a motion simulator capable of moving observers in ways unattainable by traditional simulators. Results confirm that movement in the horizontal plane is underestimated, while vertical movement is overestimated.

Physical and Chemical Properties of Matter

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2020

The characteristics that enable us to distinguish one substance from another are called properties. Physical Properties of Matter A physical property is a characteristic of matter that is not associated with a change in its chemical composition. Familiar examples of physical properties include density, color, hardness, melting and boiling points, and electrical conductivity. We can observe some physical properties, such as density and color, without changing the physical state of the matter...

Physical Properties Of Minerals II: Polymineralic Analysis

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2023

Source: Laboratory of Alan Lester - University of Colorado Boulder The physical properties of minerals include various measurable and discernible attributes, including color, streak, magnetic properties, hardness, crystal growth form, and crystal cleavage. These properties are mineral-specific, and they are fundamentally related to a particular mineral’s chemical make-up and atomic structure. This video examines several physical properties that are useful in field and hand sample mineral...

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