Antarctic fossils 85-6. deep sea rock record I 92 i , 93. fairy wasp fossils 131-2, I 132 i . fossil amber I 126 i . fossil preservation 169-70, 170, I 170 i . ocean floor environment 189. palaeowind patterns 215-16, I 215 i , I 216 i . crime in mining and mineral distribution 168. crinoids, Classic localities explained 24. Cretaceous chalk seafloor can provide inspiration for human technology operating in challenging marine conditions I 190 i . enrolled phacopid trilobite I 190 i . fossils and biomimicry 189-90. fossils and biotechnology 190. living fossils 191. OroBOT, a robotic reincarnation of the Permian amniote I Orobates pabsti 189 i . fossil-inspired artificial bivalve shell I 190 i . fossil trees, Lesbos petrified forest 50, I 50 i . fossil wood 48, I 48 i . fossils. Cretaceous chalk seafloor can provide inspiration for human technology operating in challenging marine conditions I 190 i . enrolled phacopid trilobite I 190 i . fossils and biomimicry 189-90. fossils and biotechnology 190. living fossils 191. K, S and Se variations I 62 i . location of zinc smelters and the oak I 60 i . massive and disseminated ore minerals I 60 i . ore chemistry B 61. b the Palmerston zinc smelters 60. sources for the Palmerston ores 60-2. tree rings in oak tree I 59 i . the tree-ring record 62-3. palynology, Cretaceous 131-2, I 132 i . [Extracted from the article]