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In mechanical engineering, a kinematic diagram or kinematic scheme (also called a joint map or skeleton diagram) illustrates the connectivity of links and joints of a mechanism or machine rather than the dimensions or shape of the parts. Often links are presented as geometric objects, such as lines, triangles or squares, that support schematic ...
In physics and engineering, a free body diagram (FBD; also called a force diagram) [1] is a graphical illustration used to visualize the applied forces, moments, and resulting reactions on a free body in a given condition. It depicts a body or connected bodies with all the applied forces and moments, and reactions, which act on the body(ies).
Use the button with four arrows to move around the diagram. Use the text button to add text to your diagram. The next 9 buttons are used to add shapes and lines to the diagram. Experiment with them: they are pretty much self explanatory.
A kinematic diagram is a schematic of the mechanical system that shows the kinematic chain. The modern use of kinematic chains includes compliance that arises from flexure joints in precision mechanisms, link compliance in compliant mechanisms and micro-electro-mechanical systems, and cable compliance in cable robotic and tensegrity systems. [3 ...
The plot is occasionally attributed to Augustinsson [5] and referred to the Woolf–Augustinsson–Hofstee plot [6] [7] [8] or simply the Augustinsson plot. [9] However, although Haldane, Woolf or Eadie were not explicitly cited when Augustinsson introduced the versus / equation, both the work of Haldane [10] and of Eadie [3] are cited at other places of his work and are listed in his ...
A reaction coordinate diagram can also be used to qualitatively illustrate kinetic and thermodynamic control in a reaction. Figure 9:Kinetic and Thermodynamic Control: A. Product B is both the kinetic and thermodynamic product and B. Product A is the kinetic product while B is the thermodynamic product. [4]
A kinetic scheme with time dependent rates: When the connections depend on the actual time (i.e. matrix depends on the time, ()), the process is not Markovian, and the master equation obeys, = (). The reason for a time dependent rates is, for example, a time dependent external field applied on a Markovian kinetic scheme (thus making the process ...
Firstly we will draw a very simple smiley face, to do so we will use the circle tool, the stroke and fill toolbox as well as the alignment toolbox. Create an outline. First we have a blank page upon which we shall emblazon our smiley face.