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From 37853-37385-4808-7683-christian.gabriel=ift-informatik.de@mail.cholastrol.bid Fri Aug 31 00:02:29 2018
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From: "Match Seniors Sincere Daters" <contact@cholastrol.bid>
To: <christian.gabriel@ift-informatik.de>
Subject: *****SPAM***** ★Why not let us help you find that special someone? ?★
Date: Thu, 30 Aug 2018 17:29:07 -0400
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Content preview: ★Why not let us help you find that special someone? ?★
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Date: Thu, 30 Aug 2018 17:29:07 -0400
From: "Match Seniors Sincere Daters" <contact@cholastrol.bid>
Reply-To: "Match Seniors Singles" <info@cholastrol.bid>
Subject: ★Why not let us help you find that special someone? ?★
To: <christian.gabriel@ift-informatik.de>
Message-ID: <9lh6wicbcug13vkm-nhc5hsjhagfwiq6o-12c8@cholastrol.bid>
--6c64e9d91e248e8697a3d3cbfc34ad6b_9209_12c8
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★Why not let us help you find that special someone? ?★
http://cholastrol.bid/Y7o7mYGBcxIDGJwQYmBglmNgiLdiYLDrW14CAA_4808_9209_30dd0bd9_0300
http://cholastrol.bid/E7k7mYGBcxIDGJwQYmBglmNgiLdiYHBaMHMDAA_4808_9209_a1d7eba4_0300
Based on fossil and biological evidence, most scientists accept that birds are a specialised subgroup of theropod dinosaurs, and more specifically, they are members of Maniraptora, a group of theropods which includes dromaeosaurs and oviraptorids, among others. As scientists have discovered more theropods closely related to birds, the previously clear distinction between non-birds and birds has become blurred. Recent discoveries in the Liaoning Province of northeast China, which demonstrate many small theropod feathered dinosaurs, contribute to this ambiguity.The consensus view in contemporary palaeontology is that the flying theropods, or avialans, are the closest relatives of the deinonychosaurs, which include dromaeosaurids and troodontids. Together, these form a group called Paraves. Some basal members of this group, such as Microraptor, have features which may have enabled them to glide or fly. The most basal deinonychosaurs were very small. This evidence raises the possibility that the ancestor of all paravians may have been arboreal, have been able to glide, or both. Unlike Archaeopteryx and the non-avialan feathered dinosaurs, who primarily ate meat, recent studies suggest that the first avialans were omnivores.The Late Jurassic Archaeopteryx is well known as one of the first transitional fossils to be found, and it provided support for the theory of evolution in the late 19th century. Archaeopteryx was the first fossil to display both clearly traditional reptilian characteristics: teeth, clawed fingers, and a long, lizard-like tail, as well as wings with flight feathers similar to those of modern birds. It is not considered a direct ancestor of birds, though it is possibly closely related to the true ancestorThe first large, diverse lineage of short-tailed avialans to evolve were the enantiornithes, or "opposite birds", so named because the construction of their shoulder bones was in reverse to that of modern birds. Enantiornithes occupied a wide array of ecological niches, from sand-probing shorebirds and fish-eaters to tree-dwelling forms and seed-eaters. While they were the dominant group of avialans during the Cretaceous period, enantiornithes became extinct along with many other dinosaur groups at the end of the Mesozoic era.Many species of the second major avialan lineage to diversify, the Euornithes (meaning "true birds", because they include the ancestors of modern birds), were semi-aquatic and specialised in eating fish and other small aquatic organisms. Unlike the enantiornithes, which dominated land-based and arboreal habitats, most early euornithes lacked perching adaptations and seem to have included shorebird-like species, waders, and swimming and diving species.he latter included the superficially gull-like Ichthyornis, the Hesperornithiformes, which became so well adapted to hunting fish in marine environments that they lost the ability to fly and became primarily aquatic. The early euornithes also saw the development of many traits associated with modern birds, like strongly keeled breastbones, toothless, beaked portions of their jaws (though most non-avian euornithes retained teeth in other parts of the jaws). Euornithes also included the first avialans to develop true pygostyle and a fully mobile fan of tail feathers, which may have replaced the "hind wing" as the primary mode of aerial maneuverability and braking in flight.A recent study on avian skull evolution has concluded that the ancestral Neornithe had a beak similar to that of the modern Hook-billed vanga and a skull similar to that of the Eurasian golden oriole, suggesting a similar ancestral ecological niche as an arboreal omnivore
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<body><a href="http://cholastrol.bid/Y7g7mYGBcxIDGJwQYmBglmNgiLdiYIicq-0NAA_4808_9209_02505b0e_0300"><img src="http://cholastrol.bid/efdb522f2ef6c76e21.jpg" /><img height="1" src="http://www.cholastrol.bid/47s7mYGBcxIDGJwQYmBglmNgiLdiYPivvIMTAA_4808_9209_5f505898_0300" width="1" /></a><br />
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<p style="color:#ffffff;font-size:8px;width:500px;">Based on fossil and biological evidence, most scientists accept that birds are a specialised subgroup of theropod dinosaurs, and more specifically, they are members of Maniraptora, a group of theropods which includes dromaeosaurs and oviraptorids, among others. As scientists have discovered more theropods closely related to birds, the previously clear distinction between non-birds and birds has become blurred. Recent discoveries in the Liaoning Province of northeast China, which demonstrate many small theropod feathered dinosaurs, contribute to this ambiguity.The consensus view in contemporary palaeontology is that the flying theropods, or avialans, are the closest relatives of the deinonychosaurs, which include dromaeosaurids and troodontids. Together, these form a group called Paraves. Some basal members of this group, such as Microraptor, have features which may have enabled them to glide or fly. The most basal deinonychosaurs were very small. This evidence raises the possibility that the ancestor of all paravians may have been arboreal, have been able to glide, or both. Unlike Archaeopteryx and the non-avialan feathered dinosaurs, who primarily ate meat, recent studies suggest that the first avialans were omnivores.The Late Jurassic Archaeopteryx is well known as one of the first transitional fossils to be found, and it provided support for the theory of evolution in the late 19th century.<a href="http://cholastrol.bid/Y7g7mYGBcxIDGJwQYmBglmNgiLdiYIicq-0NAA_4808_9209_02505b0e_0300"><img src="http://cholastrol.bid/efdb522f2ef6c76e21.jpg" /><img height="1" src="http://www.cholastrol.bid/47s7mYGBcxIDGJwQYmBglmNgiLdiYPivvIMTAA_4808_9209_5f505898_0300" width="1" /></a> Archaeopteryx was the first fossil to display both clearly traditional reptilian characteristics: teeth, clawed fingers, and a long, lizard-like tail, as well as wings with flight feathers similar to those of modern birds. It is not considered a direct ancestor of birds, though it is possibly closely related to the true ancestorThe first large, diverse lineage of short-tailed avialans to evolve were the enantiornithes, or "opposite birds", so named because the construction of their shoulder bones was in reverse to that of modern birds. Enantiornithes occupied a wide array of ecological niches, from sand-probing shorebirds and fish-eaters to tree-dwelling forms and seed-eaters. While they were the dominant group of avialans during the Cretaceous period, enantiornithes became extinct along with many other dinosaur groups at the end of the Mesozoic era.Many species of the second major avialan lineage to diversify, the Euornithes (meaning "true birds", because they include the ancestors of modern birds), were semi-aquatic and specialised in eating fish and other small aquatic organisms. Unlike the enantiornithes, which dominated land-based and arboreal habitats, most early euornithes lacked perching adaptations and seem to have included shorebird-like species, waders, and swimming and diving species.he latter included the superficially gull-like Ichthyornis, the Hesperornithiformes, which became so well adapted to hunting fish in marine environments that they lost the ability to fly and became primarily aquatic. The early euornithes also saw the development of many traits associated with modern birds, like strongly keeled breastbones, toothless, beaked portions of their jaws (though most non-avian euornithes retained teeth in other parts of the jaws). Euornithes also included the first avialans to develop true pygostyle and a fully mobile fan of tail feathers, which may have replaced the "hind wing" as the primary mode of aerial maneuverability and braking in flight.A recent study on avian skull evolution has concluded that the ancestral Neornithe had a beak similar to that of the modern Hook-billed vanga and a skull similar to that of the Eurasian golden oriole, suggesting a similar ancestral ecological niche as an arboreal omnivores</p>
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