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This research aimed a quantitative analysis of the cusp aspects generated in an axial fatigue test by carrying out fractographic measurements in order to know their influence on the fatigue test parameters, e.g. stress level, number of cycles, frequency, and stress ratio.
In this paper we report on in situ observations and analysis of the cusp for the first time.
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We report on the first analysis of magnetospheric cusp observations at Saturn by multiple in situ instruments onboard the Cassini spacecraft.
Table 2 shows the comparative results regarding the prediction of treatment difficulty degree with KPG index and Ericson and Kurol's analysis of canine's cusp tip position relative to the lateral incisor bisecting axis.
Plasma also enters the cusp from the ionosphere at the bottom of the cusp.
Results: Cusp basal regions measured 0.69 to 0.86 mm in thickness, significantly thicker (P =.001) than the rest of the cusp, which measured 0.36 to 0.48 mm.
The labial ridges on the first and fourth cusp only reach the base of the cusp, but those on the second and third cusps join ridges descending from the first and second labial cusp.
The characteristics of the cusp at Saturn are very similar to the terrestrial cusp, with the presence of two types of dispersions: energy-latitude and energy-pitch angle.
Intra-operatively, a large aortic vegetation attached to the left coronary cusp and an abscess cavity with destruction of the cusp and aortic root were seen.
Reduction of the cusp and topical application of fluoride gel was initiated.
The associated characteristics of the cusp are Earth-like with similar dispersions observed.
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