Molecule mining: Difference between revisions

From formulasearchengine
Jump to navigation Jump to search
en>Rjwilmsi
m Format plain DOIs using AWB (8060)
 
en>Rjwilmsi
m Journal cites, added 1 DOI using AWB (9904)
 
Line 1: Line 1:
The person who wrote the article is known as Jayson Hirano and he completely digs that title. The preferred hobby for him and his children is to perform lacross and he would never give it up. Some time ago she chose to live in Alaska and her parents reside close by. Office supervising is my  [http://c045.danah.co.kr/home/index.php?document_srl=1356970&mid=qna telephone psychic] profession.<br><br>My site real [http://1.234.36.240/fxac/m001_2/7330 psychic readings], [http://www.weddingwall.com.au/groups/easy-advice-for-successful-personal-development-today/ click through the next document],
In [[mechanics]] and [[aerodynamics]], the drag area of an object represents the effective size of the object as it is "seen" by the fluid flow around it. The drag area is usually expressed as a product <math>C_d A,</math> where <math>A</math> is a representative area of the object, and <math>C_d</math> is the [[drag coefficient]], which represents what shape it has and how streamlined it is.
 
The drag coefficient plays a role in [[Reynold's drag equation]],
:<math>F_d=\frac{1}{2}\ \rho\ C_d A\ v^2.</math>
Here, <math>F_d</math> is the drag force, <math>\rho</math> the density of the fluid, and <math>v</math> the speed of the object relative to the fluid.
 
==See also==
*[[Drag (physics)]]
*[[Automobile drag coefficient#Drag area]]
*[[Zero-lift drag coefficient]]
 
 
 
[[Category:Aerodynamics]]

Latest revision as of 22:59, 3 February 2014

In mechanics and aerodynamics, the drag area of an object represents the effective size of the object as it is "seen" by the fluid flow around it. The drag area is usually expressed as a product CdA, where A is a representative area of the object, and Cd is the drag coefficient, which represents what shape it has and how streamlined it is.

The drag coefficient plays a role in Reynold's drag equation,

Fd=12ρCdAv2.

Here, Fd is the drag force, ρ the density of the fluid, and v the speed of the object relative to the fluid.

See also