Pascal Second

The pascal second (Pa·s) is the SI derived unit of dynamic viscosity, which quantifies a fluid’s resistance to internal deformation or flow. It relates shear stress to the velocity gradient in a fluid: for a Newtonian fluid, viscosity remains constant as shear stress increases, following τ = η(du/dy), where η is measured in pascal seconds. This unit is used to compare liquids and gases, characterize materials such as oils, polymers, and biological fluids, and guide fluid-flow calculations in physics and engineering. Viscosity measurements also support process design, lubrication studies, and analysis of transport phenomena.

Pascal Second - Related Videos

Education

JoVE Core - Physics

Application of Pascal's Law

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2023

Pascal's experimentally proven observations—that a change in pressure applied to an enclosed fluid is transmitted undiminished throughout the fluid and to the walls of its container—provide the foundations for hydraulics, one of the most important developments in modern mechanical technology. Hydraulic systems are used to operate automotive brakes, hydraulic jacks, and numerous other mechanical systems. We can derive a relationship between the forces in a simple hydraulic system by applying...

Pascal's Law

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2023

In 1653, the French philosopher and scientist Blaise Pascal published "Treatise on the Equilibrium of Liquids," which discussed the principles of static fluids. A static fluid is a fluid that is not in motion. When a fluid is not flowing, we say that the fluid is in static equilibrium. If the fluid is water, we say it is in hydrostatic equilibrium. For a fluid in static equilibrium, the net force on any part of the fluid must be zero; otherwise, the fluid will start to flow. Pascal observed...

Binomial Expansion Using Pascal's Triangle

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2025

Expanding a binomial expression such as (a + b)n results in a predictable sequence of terms that can be systematically derived using Pascal’s Triangle. This triangular array of numbers plays a central role in understanding and computing the coefficients of binomial expansions.Pascal’s Triangle is constructed such that each row corresponds to the coefficients of a binomial raised to a power. The topmost row, known as the zeroth row, corresponds to (a + b)0, and each successive row gives the...

Research

JoVE Journal - Engineering

High-Sensitivity Nuclear Magnetic Resonance at Giga-Pascal Pressures: A New Tool for Probing Electronic and Chemical Properties of Condensed Matter under Extreme Conditions

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Cited by 8 •

2014

Nuclear magnetic resonance is one of the most important spectroscopic tools. Here, the development of a new approach under high pressure, currently up to 10.1 GPa, is presented. This opens a new window into condensed matter physics and chemistry, where high-pressure research is of great importance.

A Microfluidic Chip for ICPMS Sample Introduction

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Cited by 4 •

2015

We present a discrete droplet sample introduction system for inductively coupled plasma mass spectrometry (ICPMS). It is based on a cheap and disposable microfluidic chip that generates highly monodisperse droplets in a size range of 40−60 µm at frequencies from 90 to 7,000 Hz.

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