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536 results for “Tyrannosaurus rex”
Law of Cosines in Heterodonty in Tyrannosaurus rex: Implications for the taxonomic and systematic utility of theropod dentitions
Law of Cosines
movement in A 3D interactive method for estimating body segmental parameters in animals: Application to the turning and running performance of Tyrannosaurus rex
movement
mass properties in A 3D interactive method for estimating body segmental parameters in animals: Application to the turning and running performance of Tyrannosaurus rex
mass properties
Figure 10.5 in Variation in Tyrannosaurus rex
Figure 10.5. An overlay of the ischia of A, CM 9380; B, TMP 81.61; and C, AMNH 5027.
Figure 10.4. A in Variation in Tyrannosaurus rex
Figure 10.4. A comparison of the cervicals of A, AMNH 5027 and B, BM(NH) R7994. Scale = 10 cm.
FIGURE 3 in Body Mass, Bone "Strength Indicator," and Cursorial Potential of Tyrannosaurus rex
FIGURE 3. How to kill a Tyrannosaurus rex.
Figure 1.16 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.16 Theropod eggshell (A) found with Steven, BHI 6249; close-up (B). Photos: (A) Ed Gerken.
Figure 1.8. Black Beauty RTMP 81.6.1 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.8. Black Beauty RTMP 81.6.1, cast skull. Photo by Ed Gerken.
Figure 1.4. MOR 008 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.4. MOR 008, cast of skull. Photo by Ed Gerken.
Figure 1.2. CMNH 9380 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.2. CMNH 9380, skeleton on display. Photo by Peter Larson.
Figure 8.16 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.16. Femur length vs. circumference.
Figure 8.12 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.12. Ilium length vs. height.
Figure 8.9 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.9. Examples of measurement techniques used in this study.
Figure 8.8 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.8. Type specimen of Nanotyrannus lancensis CMNH 7541.
Figure 8.7 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.7. Lachrymal length vs. lachrymal foramina length.
Figure 8.1 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.1. (Left) Tyrannosaurus "x" (AMNH 5027). (Right) Tyrannosaurus rex (BHI3033).
Tyrannosaurus Rex - AMNH [Point Cloud]
"The 4-foot-long jaw, the 6-inch-long teeth, the massive thigh bones—almost everything about Tyrannosaurus rex indicates the enormous power of one of the largest theropod dinosaurs that ever existed. The fossil was originally arranged so that the dinosaur stood upright. Museum scientists later determined that it was more accurate to show the Tyrannosaurus rex mounted in a stalking position, with its head low, tail extended, and one foot slightly raised." ~ https://www.amnh.org/exhibitions/permanent-exhibitions/fossil-halls/hall-of-saurischian-dinosaurs/tyrannosaurus-rex Source: Objaverse 1.0 / Sketchfab
Puzzle 4D Dinosaur tooth (Tyrannosaurus rex)
**Ejemplar:** *Tyrannosaurus Rex * **Edad:** 68-66 M.a. Maastrichtiense (Cretácico Superior) **Localidad:** Dakota del Sur (Montana, USA) **Descripción:** ejemplar impreso en filamento termoplástico PLA a partir de una réplica de escayola a tamaño real **Sigla museo, colección y entidad:** MGUV , colección fósiles 3D Museo de la Universidad de Valencia de Historia Natural **Técnica digitalización / modelo:** escáner 3D de luz estructurada EinscanPro, modo fijo y calidad media **puzzle 4D:** Luban3D, PLA filament **Autor digitalización y procesado:** Jose A. Villena **Cita ejemplar:** modelo diente T-Rex MUVHN-Fecyt **Archivos STL: ** puzzle 4D de 6 piezas **Proyecto:** "Una ventana digital a la Historia Natural" subvención para el Fomento de la Cultura Científica, Tecnológica y de la Innovación Fecyt (Ministerio de Ciencia e Innovación). **Descarga archivos puzzle STL: ** https://nasmuseo.uv.es/owncloud/index.php/s/GTXgwipZ7bWHqWc Source: Objaverse 1.0 / Sketchfab
Figure 2 in Age and growth dynamics of Tyrannosaurus rex
Figure 2. Growth trajectories of individual specimens of Tyrannosaurus rex. These are expressed as an annual percentage of attainment of full size (cortical radius of long bones). The variation results from the fact that different bones grow at different rates. The early trajectories of bone growth are estimated (see table 1).
Figure 1 in Age and growth dynamics of Tyrannosaurus rex
Figure 1. Bone histology of Tyrannosaurus rex. Transverse thin sections of long bone mid-shafts. (a) MOR 009, composite quadrants of tibia. COR, cortex; MA, major axis; MED, medullary cavity; MI, minor axis; R, radius. (b) MOR 1128, external cortex of tibia, showing typical fibro-lamellar bone and LAG (arrow). In this region the bone is growing at an average rate of 11.2– 17.4 цm d―1, comparable to very rapid growth in the developing mallard (Castanet et al. 1996). (c) MOR 1152, external cortex of fibula showing tight spacing of eight LAGs (arrows) throughout the cortex. The round structures with small centres interrupting the matrix are mature secondary osteons that progressively invade the cortex centrifugally. (d) Detail of (c) showing the outermost cortex with tighter spacing of nine more LAGs. External to these LAGs is a compact area of low vascularity that may reflect the final stages of very slow growth. (e) MOR 1152, outer cortex of femur showing the final closely spaced three LAGs that may correspond to the outermost layer of the fibula. Scale bars: (a) 2 cm; (b–e) 1 mm.
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