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An Introduction to Mechanics01:28

An Introduction to Mechanics

8.1K
Humans have been making ships, shelters, pyramids, weapons, agricultural equipment, and many more items without recording the process or theory behind them for centuries. It would be challenging to document the evolution of mechanics from its origin to the present.
According to records, the history of mechanics starts with Aristotle (384–322 BC). He related mechanics to physical theory, aiming for a universal synthesis.
Newton defined mechanics as the branch of physical science that...
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Types of Forces01:09

Types of Forces

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In most situations, forces can be grouped into two categories: contact forces and field forces.  Contact forces occur as a result of direct physical contact between objects. Field forces, however, act without the necessity of physical contact between objects. They depend on the presence of a "field" in the region of space surrounding the body under consideration. You can think of a field as a property of space that is detectable by the forces it exerts. Scientists think there...
16.1K
Upward Impending Motion01:21

Upward Impending Motion

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A square-threaded screw jack is a mechanical device widely used for lifting heavy loads or applying considerable force. Its operation is based on converting the force applied at its handle into a torsional moment, causing the upward impending motion of the screw. This movement is accomplished by overcoming the static friction between the threads of the screw and the jack.
To better comprehend how a screw jack functions, consider the completely unraveled thread as a block in contact with the...
642
Stability of structures01:14

Stability of structures

587
In mechanical engineering, the stability of systems under various forces is critical for designing durable and efficient structures. One fundamental way to explore these concepts is by analyzing systems like two rods connected at a pivot point, O, with a torsional spring of spring constant k at the pivot point. This system is similar in appearance to a scissor jack used to change tires on a car. In this case, the arms of the linkage (equivalent to the rods in this system) are entirely vertical,...
587
Force01:06

Force

33.9K
Forces affect every moment of our life. Our bodies are held to the Earth by force, and they are held together by the forces of charged particles. When we open a door, walk down a street, lift a fork, or touch a baby's face, we are applying force. Our body's atoms are held together by electrical forces, and the core of an atom, called the nucleus, is held together by the strongest force known to us—nuclear force.
The study of motion is called kinematics, but kinematics only...
33.9K
Introduction to force01:25

Introduction to force

1.4K
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...
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Updated: Mar 21, 2026

Probing the Roles of Physical Forces in Early Chick Embryonic Morphogenesis
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Probing the Roles of Physical Forces in Early Chick Embryonic Morphogenesis

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SnapShot: Fuerzas mecánicas en desarrollo II

David Dreher1, Laurynas Pasakarnis1, Damian Brunner1

  • 1Department of Molecular Life Sciences, University of Zurich, 8057 Zürich, Switzerland.

Cell
|May 7, 2016
PubMed
Resumen

Las células utilizan diversas fuerzas mecánicas más allá de la actina / miosina II para el desarrollo y la detección ambiental. Esta revisión explora mecanismos alternativos de generación de fuerza y herramientas experimentales para el análisis.

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Área de la Ciencia:

  • Mecánica celular
  • La biofísica
  • Biología del desarrollo

Sus antecedentes:

  • Las redes de actina / miosina II son los principales impulsores de las fuerzas mecánicas celulares.
  • Comprender los mecanismos alternativos es crucial para obtener una imagen completa de la función celular.

Objetivo del estudio:

  • Presentar mecanismos alternativos de generación de fuerza en las células.
  • Para resaltar cómo las células perciben y responden a las propiedades mecánicas ambientales.
  • Introducir herramientas experimentales para el análisis de la fuerza mecánica.

Principales métodos:

  • Revisión de la literatura existente sobre la mecánica celular.
  • Discusión de las vías de generación de fuerza no canónicas.
  • Resumen de las técnicas experimentales para la medición de la fuerza.

Principales resultados:

  • Se han identificado diversos mecanismos celulares que generan fuerzas mecánicas más allá de la actina/miosina II.
  • Demostró el papel de las fuerzas celulares en el mecanismo sensorial ambiental.
  • Catalogado herramientas experimentales clave para el estudio de las fuerzas celulares.

Conclusiones:

  • Las fuerzas mecánicas celulares se generan a través de múltiples vías.
  • Las células interactúan activamente y responden a su entorno mecánico.
  • Las herramientas avanzadas están disponibles para diseccionar los procesos mecánicos celulares.