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Earth Systems and Earth materials Solar system: Inner planets (Mercury, Venus, Earth, Mars) – rocky planets Outer planets (Jupiter, Saturn, Uranus, Neptune, Pluto)- gas and ice. Planets condensed from solar cloud orbiting the sun. Earth Systems: Lithosphere the solid earth: (outer rocky crust) Hydrosphere: includes all types of water and ice Biosphere: all organic matters dead and alive Atmosphere: gas surrounding Earth Most Earth systems closed – except energy from sun Cycles between and within systems: Rock cycle Hydrologic cycle, Carbon cycle Earth materials Elements- periodic table of elements (Appendix 1) Most rocks rich in Oxygen (O), Silicon (Si), Aluminum (Al) and Iron (Fe). Earth’s crust is composed of rocks, which are composed of minerals. Mineral: naturally occurring, usually crystalline substance with a narrow range in chemical composition. Have characteristic physical properties. Exclude organic compounds. Native elements: e.g. copper, gold, carbon (diamond, graphite). Amorphous minerals: non-crystalline (glassy). Minerals composed of chemically bonded ions (atoms with electrical charge). Halite (rock salt) : NaCl Important mineral groups Carbonates: CO3 – calcite (e.g. Ca CO3) Oxides: O – hematite (Fe2O3) Sulfides; S – Galena (PbS) Native elements: gold, copper, lead, carbon etc. Sulfate: SO4—Gypsum Ca SO4 Silicates (most important group) – SiO4 -- Quartz (SiO2) Most rocks in Earth’s crust composed of silicates Basic building block of silicates is silicon tetrahedron- SiO4 Isolated tetrahedra, chains, double chains, sheets, 3-D framework Physical properties of minerals Hardness (Mohs scale), 1 (talc) – 10 (diamond) Cleavage: planes of weakness along which the mineral breaks Crystal shape: cubic, bipyramid etc. Color not reliable Rocks Igneous, metamorphic, sedimentary Rock cycle: because the Earth is a dynamic planet, the 3 rock types are converted into each other. END