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Related Concept Videos

Constant Volume Calorimetry02:41

Constant Volume Calorimetry

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Calorimeters are useful to determine the heat released or absorbed by a chemical reaction. Coffee cup calorimeters are designed to operate at constant (atmospheric) pressure and are convenient to measure heat flow (or enthalpy change) accompanying processes that occur in solution at constant pressure. A different type of calorimeter that operates at constant volume, colloquially known as a bomb calorimeter, is used to measure the energy produced by reactions that yield large amounts of heat and...
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Volume of Distribution01:20

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The apparent volume of distribution (Vd) is a crucial pharmacokinetic parameter representing the hypothetical body fluid volume into which a drug disperses. It is calculated based on the total amount of drug in the body (estimated from the administered dose and bioavailability) divided by the plasma drug concentration. The total amount of drug in the body does not directly refer to the dose given but is derived by accounting for absorption, distribution, metabolism, and excretion processes.
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Social psychologists have documented that feeling good about ourselves and maintaining positive self-esteem is a powerful motivator of human behavior (Tavris & Aronson, 2008). In the United States, members of the predominant culture typically think very highly of themselves and view themselves as good people who are above average on many desirable traits (Ehrlinger, Gilovich, & Ross, 2005). Often, our behavior, attitudes, and beliefs are affected when we experience a threat to our...
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Problem Solving: Volume01:13

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The volume of a fuel tank mounted on the wing of a jet aircraft can be modeled using the concept of solids of revolution. In this case, the tank is formed by rotating a two-dimensional region, defined by a mathematical function, about the x-axis. The region extends along the axis from zero to two meters, and the resulting three-dimensional shape is symmetric about the axis of rotation. Because the boundary curve lies directly against the axis, the disk method is an appropriate technique for...
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Respiratory volumes are crucial metrics, meticulously measured to quantify the air exchanged in and out of the lungs during various phases of the breathing cycle. These precise measurements are vital for assessing lung function, diagnosing respiratory conditions, and monitoring overall respiratory health. Each parameter provides specific insights into the mechanics of breathing and the functional capacity of the lungs.
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In mechanics, work is done on an object when the force acting on it displaces the object. In thermodynamics, work done on a system can be estimated when the system's volume changes during any thermodynamic process.
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Related Experiment Video

Updated: Feb 7, 2026

Unilateral Lung Volume Analysis Using Micro-CT for Enhanced Assessment of Pulmonary Fibrosis in Preclinical Models
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Volume-Enhanced Compatible Remeshing of 3D Models.

Yang Yang, Xiao-Ming Fu, Shuangming Chai

    IEEE Transactions on Visualization and Computer Graphics
    |August 7, 2018
    PubMed
    Summary

    This study introduces a fast and high-quality compatible remeshing method. It significantly improves computational efficiency and mesh quality compared to existing techniques.

    Area of Science:

    • Computer Graphics
    • Computational Geometry
    • Geometric Modeling

    Background:

    • Compatible remeshing is crucial for creating meshes with shared connectivity.
    • Existing methods often face challenges with high computational costs and suboptimal mesh quality.

    Purpose of the Study:

    • To develop a fast and high-quality method for computing compatible meshes.
    • To address the limitations of current compatible remeshing techniques.

    Main Methods:

    • Compute a bijective inter-surface mapping between topologically equivalent surfaces with landmarks.
    • Improve remeshing quality using volume-enhanced optimization to reduce isometric distortion.
    • Employ a monotone preconditioned conjugate gradient method for efficient energy minimization.

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    Main Results:

    • The proposed method achieves approximately one order of magnitude speedup compared to state-of-the-art approaches.
    • Demonstrates superior remeshing quality and shape preservation of input surfaces.
    • Efficiently generates compatible meshes with reduced distortion.

    Conclusions:

    • The new method offers a significant advancement in fast and high-quality compatible remeshing.
    • It provides an efficient and effective solution for generating compatible meshes.
    • The technique is validated through various model pair demonstrations.