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Morphogenesis02:19

Morphogenesis

28.8K
Plant morphogenesis—the development of a plant’s form and structure—involves several overlapping developmental processes, including growth and cell differentiation. Precursor cells differentiate into specific cell types, which are organized into the tissues and organ systems that make up the functional plant.
28.8K
Bending of Material: Problem Solving01:09

Bending of Material: Problem Solving

246
In this lesson, determine the ratio of the maximum bending moments applied to two metal pipes, given that both pipes can withstand a maximum stress of 100 MPa. Both pipes have an outer radius of 1.8 cm. Pipe A has an inner radius of 1.5 cm, and Pipe B has an inner radius of 1 cm. The ratio of the maximum bending moment applied to two metallic pipes, each with a different inner and outer radius, is determined by considering their dimensions. The inner radius of the first pipe is 1.5 cm, and for...
246
Plastic Deformations of Members with a Single Plane of Symmetry01:21

Plastic Deformations of Members with a Single Plane of Symmetry

126
When a structural member undergoes plastic deformation due to bending, it is crucial to understand the position of the neutral axis and the stress distribution. This member, characterized by a single plane of symmetry, exhibits a uniform stress distribution, with negative stress above the neutral axis and positive stress below. Notably, the neutral axis does not align with the centroid of the cross-section. This misalignment is typical in cases where the cross-section is not rectangular or...
126
Forced Transdifferentiation01:28

Forced Transdifferentiation

2.0K
Transdifferentiation, also known as lineage reprogramming, was first discovered by Selman and Kafatos in 1974 in silkmoths. They observed that the moths’ cuticle-producing cells transformed into salt-producing cells. Many such cases of natural transdifferentiation occur in organisms. In humans, pancreatic alpha cells can become beta cells. In newts, the loss of the eye’s lens causes the pigmented epithelial cells to transdifferentiate into the lens cells.
Artificial...
2.0K
Transformation of Plane Strain01:12

Transformation of Plane Strain

244
When analyzing elongated structures like bars subjected to uniformly distributed loads, it is essential to understand the transformation of plane strain when coordinate axes are rotated. This transformation helps to assess how material deformation characteristics vary with orientation, which is crucial in materials science and structural engineering.
Under plane strain conditions, typical for members where one dimension significantly exceeds the others, deformations and resultant strains are...
244
Deformations in a Transverse Cross Section01:21

Deformations in a Transverse Cross Section

313
When a material is subjected to uniaxial stress, it elongates or contracts in the direction of the applied force, and also undergoes changes in the perpendicular directions. This behavior is crucial for understanding how materials behave under stress and is governed by mechanical properties such as Poisson's ratio v, which measures the ratio of transverse strain to axial strain.
As the material stretches, it expands or contracts in orthogonal directions to the load. This phenomenon varies...
313

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相关实验视频

Updated: Sep 14, 2025

Creating Objects and Object Categories for Studying Perception and Perceptual Learning
14:38

Creating Objects and Object Categories for Studying Perception and Perceptual Learning

Published on: November 2, 2012

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一个可差异化的材料点方法框架,用于形状变形.

Michael Xu, Chang-Yong Song, David Levin

    IEEE transactions on visualization and computer graphics
    |July 22, 2025
    PubMed
    概括
    此摘要是机器生成的。

    本研究介绍了一种基于物理的变形技术,用于弹性形状的可微分材料点方法 (MPM). 它有效地处理复杂的拓变化,并产生连贯的,详细的变形序列.

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    Three-Dimensional Shape Modeling and Analysis of Brain Structures
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    Three-Dimensional Shape Modeling and Analysis of Brain Structures

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    Fabrication of a Bioactive, PCL-based "Self-fitting" Shape Memory Polymer Scaffold
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    Fabrication of a Bioactive, PCL-based "Self-fitting" Shape Memory Polymer Scaffold

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    相关实验视频

    Last Updated: Sep 14, 2025

    Creating Objects and Object Categories for Studying Perception and Perceptual Learning
    14:38

    Creating Objects and Object Categories for Studying Perception and Perceptual Learning

    Published on: November 2, 2012

    11.9K
    Three-Dimensional Shape Modeling and Analysis of Brain Structures
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    Fabrication of a Bioactive, PCL-based "Self-fitting" Shape Memory Polymer Scaffold
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    科学领域:

    • 计算机图形 计算机图形
    • 计算物理 计算物理
    • 几何建模 几何建模

    背景情况:

    • 弹性形状变形经常与复杂的拓变化作斗争.
    • 现有的方法可能缺乏物理现实主义或时间连贯性.
    • 材料点方法 (MPM) 为模拟具有变化拓的可变形物体提供了一个强大的框架.

    研究的目的:

    • 为弹性形状开发一种新的,基于物理的变形技术.
    • 在统一的模拟框架内实现复杂的拓过渡.
    • 为了生成时间连贯和详细的变形序列.

    主要方法:

    • 利用可分辨材料点方法 (MPM).
    • 通过每颗粒子变形梯度实现时空控制.
    • 采用链式代优化技术进行序列生成.

    主要成果:

    • 成功演示了以物理为基础的弹性形状的变形.
    • 适应复杂的拓变化,包括物体的融合和裂变.
    • 在具有挑战性的场景中产生了详细的弹性变形和连贯的变形序列.

    结论:

    • 提出的可微分的MPM方法为基于物理的弹性形状变形提供了一个强大的解决方案.
    • 该方法有效地处理动态拓变化,并具有高保真度.
    • 这种技术推进了现实的形状转换和动画的最新技术.