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The geometry of the corresponding failure domain is further explored, with the finding that rotational relationship exists for the quadratic elementary failure domains comprising the overall failure domain.
An indirect verification of the model was provided by careful analysis of the precise rotational relationship involved in the ε → α′ transformation.
The rotational relationship of the glenohumeral joint differs between maximum elevation and arm at side, as noted by Pearl et al. (1993), who showed a 20˚ difference in rotational angle of the arm using a global diagram.
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The overall moment-rotation relationships, rotational stiffness, strength and failure modes differed depending on the web type, the location of the WFJ within the deck profile, the existing initial imperfections and the direction of the bending moment applied.
Twenty tests on square hollow section T joints were performed to observe their moment-rotation relationship, studying the following parameters: (1) bending resistance, (2) rotational stiffness, (3) ductility.
Room temperature growth leads to highly oriented columnar structured grains in the film, while growth at 550 °C yields high-quality single-crystal Cr film, possessing a 45° rotational epitaxial relationship between the film and the substrate.
The moment resistance and the rotational stiffness are two basic parameters in the moment-rotation relationships.
An expression for total shear stress has been derived from where shear stress versus torque and shear strain rate versus rotational frequency relationships have been established for the vane geometry of a concrete rheometer.
We show theoretical spectra which consider the relationship between rotational and translational transitions in the highly anisotropic adsorption environment, proving that different rotational excitations contain different amount of recoil broadening and motivating a new analysis method which considers both types of transitions at once.
Despite the analytical relationship between rotations and rotational strains, the governing equations of the beam are in general too demanding to be solved analytically.
The Rowen model assumes a linear relationship with rotational speed within a velocity band from 95% to 107% of the nominal speed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com