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Related Concept Videos

Buoyancy and Stability for Submerged and Floating Bodies01:11

Buoyancy and Stability for Submerged and Floating Bodies

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In fluid mechanics, buoyancy and stability are key concepts for understanding the behavior of submerged and floating bodies. When a stationary body is fully or partially submerged in a fluid, the fluid exerts a force on the body known as the buoyant force. This force acts vertically upward through a point called the center of buoyancy, which is the center of the displaced fluid volume. According to Archimedes' principle, the magnitude of the buoyant force is equal to the weight of the fluid...
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Buoyancy00:59

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When an object is placed in a fluid, it either floats or sinks. All objects in a fluid experience a buoyant force. For example, a metal ball sinks, while a rubber ball floats. Similarly, a submarine can sink and float by adjusting its buoyancy.  The concept of buoyancy raises several interesting questions. For instance, where does this buoyant force come from? How much buoyant force is required to make an object sink or float? Do objects that sink get any support at all from the...
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For transition metal complexes, the coordination number determines the geometry around the central metal ion. Table 1 compares coordination numbers to molecular geometry. The most common structures of the complexes in coordination compounds are octahedral, tetrahedral, and square planar.
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One might wonder how the captain of a large ship can navigate through the ocean with just a turn of the steering wheel. The answer lies in the concept of two parallel forces that are equal in magnitude and opposite sense, creating a couple moment.
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Insulation Coordination01:23

Insulation Coordination

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Insulation coordination is the process of matching electric equipment's insulation strength with protective device characteristics to protect the equipment against expected overvoltages. This selection is based on engineering judgment and cost. Equipment can generally withstand short-duration high transient overvoltages, but repeated tests with identical waveforms can yield inconsistent results. As a result, standard impulse voltage waveforms are used for testing, defined by specific times...
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Newtonian Fluid: Problem Solving01:18

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Newtonian fluids exhibit a constant viscosity, meaning their shear stress and shear strain rate are directly proportional. This property ensures a predictable and stable response to applied forces, maintaining a linear relationship between force and flow. Examples include water, air, and light oils, consistently demonstrating this proportional behavior regardless of external conditions.
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Articles linked to this work by shared authors, journal, and citation graph.

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Documenting and analyzing pre-reflective self-consciousness underlying ongoing performance optimization in elite athletes: the theoretical and methodological approach of the course-of-experience framework.

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Related Experiment Video

Updated: Dec 21, 2025

Structural Design and Manufacturing of a Cruiser Class Solar Vehicle
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Coordination between Crew Members on Flying Multihulls: A Case Study on a Nacra 17.

Eric Terrien1, Benoît Huet1, Paul Iachkine2

  • 1Laboratoire Motricité Interactions Performance (EA 4334), Université de Nantes, France.

Journal of Sports Science & Medicine
|May 12, 2020
PubMed
Summary

Sailing boats with hydrofoils require expert crew coordination for stable flight. This study identified six interaction types crucial for managing the boat

Area of Science:

  • Sport science and human-computer interaction.
  • Biomechanics and sailing dynamics.

Background:

  • Hydrofoiling sailboats represent a significant advancement in sailing technology.
  • Maintaining stable flight in hydrofoiling multihulls demands high levels of crew coordination.
Keywords:
Interpersonal coordinationcognitioncourse of experiencejoint actionwater sports

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