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Dekapoise Converter

Convert Dekapoise to Pascal Second and more • 56 conversions

Result

0

1 0
Conversion Formula
1 = ---
Quick Reference
1 = 1
10 = 10
50 = 50
100 = 100
500 = 500
1000 = 1000

Unit Explanations

DekapoisedP

Source Unit

The dekapoise (dP) is a unit of dynamic viscosity, which quantifies a fluid's resistance to flow under applied stress. It is defined as 10 poise, where one poise is equivalent to 0.1 Pascal-seconds (Pa·s). This unit is often used in various industries to characterize the flow behavior of liquids, particularly in the food, cosmetics, and chemical sectors. The use of the dekapoise allows for easier expression of viscosity values that are significantly higher than typical measurements in poise, thus facilitating comparisons and assessments of fluid properties.

1 dP = 10 P = 1 Pa·s

Current Use

Dekapoise is commonly used in industries where understanding fluid flow is essential, such as food processing, pharmaceuticals, and cosmetics. Laboratories often employ this unit when conducting rheological measurements, which assess how substances deform and flow under stress. The dekapoise facilitates communication of viscosity characteristics among engineers, scientists, and manufacturers, ensuring that specifications align with practical applications.

Fun Fact

The poise is named after Jean Léonard Marie Poiseuille, who is also known for his work in fluid dynamics.

Pascal SecondPa·s

Target Unit

The pascal second (Pa·s) is the SI unit for dynamic viscosity, representing the internal friction of fluids. It quantifies the resistance of a fluid to flow when an external force is applied. A fluid with a dynamic viscosity of one pascal second will flow under a shear stress of one pascal at a rate of one meter per second. It is a derived unit, meaning it is defined in terms of the base SI units: kilograms (kg), meters (m), and seconds (s). The pascal second is critical in fluid dynamics, engineering, and various scientific disciplines where fluid behavior is studied.

Pa·s = kg/(m·s)

Current Use

Today, the pascal second is widely used in various industries including chemical engineering, food processing, and materials science to characterize the flow properties of fluids. It is essential in applications involving lubrication, mixing, and fluid transport where understanding viscosity is crucial for efficiency and safety.

Fun Fact

The pascal second is named after Blaise Pascal, who also has the unit of pressure named after him.

Decimals:
Scientific:OFF

Result

0

1
0
Conversion Formula
1 = ...
1→1
10→10
100→100
1000→1000

📐Conversion Formula

= × 1.00000

How to Convert

To convert to , multiply the value by 1.00000. This conversion factor represents the ratio between these two units.

Quick Examples

1
=
1.000
10
=
10.00
100
=
100.0

💡 Pro Tip: For the reverse conversion (), divide by the conversion factor instead of multiplying.

dP

Dekapoise

viscosityNon-SI

Definition

The dekapoise (dP) is a unit of dynamic viscosity, which quantifies a fluid's resistance to flow under applied stress. It is defined as 10 poise, where one poise is equivalent to 0.1 Pascal-seconds (Pa·s). This unit is often used in various industries to characterize the flow behavior of liquids, particularly in the food, cosmetics, and chemical sectors. The use of the dekapoise allows for easier expression of viscosity values that are significantly higher than typical measurements in poise, thus facilitating comparisons and assessments of fluid properties.

History & Origin

The concept of viscosity has been studied since the time of Newton, who introduced the idea of a coefficient of viscosity in the early 18th century. The poise was named in honor of the French physicist Jean Léonard Marie Poiseuille, who studied the flow of fluids through pipes. The dekapoise was established as a convenient metric unit for measuring high viscosities, allowing scientists and engineers to express values that would otherwise be cumbersome in poise.

Etymology: The term 'dekapoise' combines the prefix 'deka-', meaning ten, with 'poise', named after Jean Léonard Marie Poiseuille.

1959: The dekapoise was officially r...

Current Use

Dekapoise is commonly used in industries where understanding fluid flow is essential, such as food processing, pharmaceuticals, and cosmetics. Laboratories often employ this unit when conducting rheological measurements, which assess how substances deform and flow under stress. The dekapoise facilitates communication of viscosity characteristics among engineers, scientists, and manufacturers, ensuring that specifications align with practical applications.

Food ProcessingPharmaceuticalsCosmeticsChemical Engineering

💡 Fun Facts

  • The poise is named after Jean Léonard Marie Poiseuille, who is also known for his work in fluid dynamics.
  • Viscosity measurements can vary significantly with temperature; for example, heating honey will decrease its viscosity.
  • The term 'dekapoise' is relatively rare compared to poise, as most applications tend to use either poise or centipoise.

📏 Real-World Examples

30 dP
Measuring the viscosity of motor oil
10 dP
Assessing the flow of honey
5 dP
Determining the thickness of yogurt
15 dP
Evaluating paint viscosity
8 dP
Testing cosmetic creams

🔗 Related Units

Poise (1 dP = 10 P)Centipoise (1 dP = 1000 cP)Millipascal-second (1 dP = 1000 mPa·s)Stokes (Viscosity in stokes can be related to dynamic viscosity via density.)
Pa·s

Pascal Second

viscosityNon-SI

Definition

The pascal second (Pa·s) is the SI unit for dynamic viscosity, representing the internal friction of fluids. It quantifies the resistance of a fluid to flow when an external force is applied. A fluid with a dynamic viscosity of one pascal second will flow under a shear stress of one pascal at a rate of one meter per second. It is a derived unit, meaning it is defined in terms of the base SI units: kilograms (kg), meters (m), and seconds (s). The pascal second is critical in fluid dynamics, engineering, and various scientific disciplines where fluid behavior is studied.

History & Origin

The pascal second was introduced as part of the metric system in the late 20th century, named after Blaise Pascal, a French mathematician and physicist known for his contributions to fluid mechanics and pressure. The unit was formalized in 1971 during the 14th General Conference on Weights and Measures, which aimed to standardize units for scientific accuracy and international communication.

Etymology: The term 'pascal' is derived from the name of Blaise Pascal, while 'second' refers to the time unit in the SI system.

1971: Formal introduction of the pas...

Current Use

Today, the pascal second is widely used in various industries including chemical engineering, food processing, and materials science to characterize the flow properties of fluids. It is essential in applications involving lubrication, mixing, and fluid transport where understanding viscosity is crucial for efficiency and safety.

Chemical EngineeringFood ProcessingPharmaceuticalsOil and GasAutomotive

💡 Fun Facts

  • The pascal second is named after Blaise Pascal, who also has the unit of pressure named after him.
  • Dynamic viscosity can change with temperature; for example, heating honey makes it flow more easily.
  • The viscosity of air is significantly lower than that of most liquids, making it easier for objects to move through it.

📏 Real-World Examples

1000 Pa·s
Honey flows slowly due to its high viscosity.
0.001 Pa·s
Water has a low viscosity, allowing it to flow easily.
0.1 Pa·s
Motor oil needs to maintain viscosity at high temperatures.
0.5 Pa·s
Syrup flows more slowly than water due to higher viscosity.
0.003 Pa·s
Blood has a viscosity that is crucial for proper circulation.

🔗 Related Units

Poise (1 P = 0.1 Pa·s)Centipoise (1 cP = 0.001 Pa·s)Stokes (1 St = 1 Pa·s / 1000)Newton Second (1 Ns/m² = 1 Pa·s)

Frequently Asked Questions

How do I convert to ?

To convert to , multiply your value by 1. For example, 10 equals 10 .

What is the formula for to conversion?

The formula is: = × 1. This conversion factor is based on international standards.

Is this to converter accurate?

Yes! MetricConv uses internationally standardized conversion factors from organizations like NIST and ISO. Our calculations support up to 15 decimal places of precision, making it suitable for scientific, engineering, and everyday calculations.

Can I convert back to ?

Absolutely! You can use the swap button (⇄) in the converter above to reverse the conversion direction, or visit our to converter.

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