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536 results for “Tyrannosaurus rex”
Figure 8.10 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.10. Anterior view of right metatarsal II of (A) gracile (BHI 3033) and (B) robust (TCM 2001.90.1) morphotypes.
Figure 8.17 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.17. Overlay of the ischia of (A) CM 9380; (B) RTMP 81.61; and (C) AMNH 5027 (after Carpenter 1990).
Figure 8.13 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.13. Anterior view of (A) left humerus of gracile (BHI 6230) and (B) right humerus of robust (FMNH PR2081) morphotypes.
Figure 8.5 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.5. Dorsal view of the anterior portion of the left dentary of Tyrannosaurus "x" (Samson) preserving small alveoli for DT1 and DT2 and a large alveolus for the third dentary tooth DT3.
Figure 8.2 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.2. Medial view of right dentary of the type Tyrannosaurus rex CM 9380. Note the incisiform first dentary tooth.
Figure 8.6 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.6. Lateral view of the left lachrymals of (A) Tyrannosaurus "x" AMNH 5027 and (B) Tyrannosaurus rex BHI 3033. Note the larger lateral pneumatic foramen on T. rex.
Figure 8.4 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.4. Dorsal view of the anterior portion of the left dentary of Tyrannosaurus rex CM 9380 preserving small first dentary tooth DT1 and large second dentary tooth DT2.
Figure 8.3 in Variation and sexual dimorphism in Tyrannosaurus rex
Figure 8.3. Left and right first dentary teeth of Tyrannosaurus rex BHI 3033. (A) Lateral view. (B) Posterior view. Note that both serrations are exposed in the posterior view, creating the typical tyrannosaurid D-shaped cross section.
Figure 10.1. A in Variation in Tyrannosaurus rex
Figure 10.1. A comparison of four Tyrannosaurus rex skulls. A, CM 9380 (formerly AMNH 973); B, AMNH 5027; C, LACM 23844; D, TMP 81.6.1; E, SDSM 12047. The reconstruction of CM 9380 differs from that given by Osborn (1906) in the orbital and postorbital regions. Osborn had erroneously used the right ectoptygoid as a right postorbital in the reconstructed skull at the Carnegie Museum. As may be seen in the figure, the squamosal no longer extends into the orbit. TMP 81.6.1 is more complete than shown, but preparation was not complete at the time this figure was made. SDSM 12047 is crushed dorsolaterally, which has greatly affected the snout, no attempt has been made to compensate for this. (Scale bar = lOcm.)
Fig. 9 in An Older and Exceptionally Large Adult Specimen of Tyrannosaurus rex
Fig. 9. The nasals of RSM P2523.8 in dorsal view (na, naris).
Plate 3 in The Cranial Morphology of Tyrannosaurus rex
Plate 3 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) (LACM 23844) and Custer (Montana) (MOR 008). Fig. 1. Anterior part of left nasal of MOR 008 in lateral view, showing the prominent nasal rugosities. Fig. 2. Left jugal of LACM 23844 in lateral view. Fig.3. Left jugal of LACM 23844 in medial view. Part of the medial wall of the vertical internal canal is missing, revealing the vertical canal. Scale bars 10 cm.
Fig. 9 in An Older and Exceptionally Large Adult Specimen of Tyrannosaurus rex
Fig. 9. The nasals of RSM P2523.8 in dorsal view (na, naris).
Fig. 2 in An XXL-CT-scan of an XXL Tyrannosaurus rex skull
Fig. 2. Mechanical setup of the XXL-CT system.
Fig. 8 in An XXL-CT-scan of an XXL Tyrannosaurus rex skull
Fig. 8. Extraction of the brain segment (blue) for further processing to a 3D-printer.
Fig. 1. Linac bremsstrahlung spectra for 6 and 9 in An XXL-CT-scan of an XXL Tyrannosaurus rex skull
Fig. 1. Linac bremsstrahlung spectra for 6 and 9 MeV electrons.
Fig. 7 in An XXL-CT-scan of an XXL Tyrannosaurus rex skull
Fig. 7. Virtual excavation of the skull by removing the sandstone matrix and support structures
Fig. 3 in An XXL-CT-scan of an XXL Tyrannosaurus rex skull
Fig. 3. Preparation of the skull at the excavation site.
Plate III. Tyrannosaurus rex. Section of skull showing brain cavity. Amer. Mus. No. 5029: Scale 1/2. in Crania of Tyrannosaurus and Allosaurus
Plate III. Tyrannosaurus rex. Section of skull showing brain cavity. Amer. Mus. No. 5029: Scale 1/2.
Table 10.2 in Looking again at the forelimb of Tyrannosaurus rex
<p>Table 10.2. <i>Power Analysis</i> Summary Abbreviations.—RF, <i>resistive</i> force; MWR, <i>maximum</i> working rang-; NWR, <i>normal</i> working range.</p><table><tbody><tr><th></th><th>RF (kg)</th></tr></tbody><tbody><tr><th>Range</th><td>Radius</td><td>Ulna</td><td>Combined</td></tr><tr><th>MWR</th><td>18.36</td><td>82.13</td><td>100.49</td></tr><tr><th>NWR</th><td>6.12</td><td><i>27.37</i></td><td>33.49</td></tr></tbody></table>
Table 10.1 in Looking again at the forelimb of Tyrannosaurus rex
<p>Table 10.1. <i>Power</i> AnalysisMeasurements Abbreviations.—MFA, motive force arm; RFA, restive force arm.</p><table><tbody><tr><th>Measurement</th><th>Radius</th><th>Ulna</th></tr></tbody><tbody><tr><th>MFA</th><td>15.2 mm (0.0152 m)</td><td>45.8 mm (0.0458 m)</td></tr><tr><th>RFA</th><td>166.2 mm (0.166 m)</td><td>186.6 mm (0.187 m)</td></tr><tr><th>MANUS</th><td>177.6 mm (0.178 m)</td><td>177.6 mm (0.178 m)</td></tr><tr><th>RFA including manus</th><td>343.8 mm (0.344 m)</td><td>364.2 mm (0.364 m)</td></tr></tbody></table>
ScienceDex guides
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