G13: Geological Time & Stratigraphy
The geological timescale, principles of stratigraphy, and methods of dating rocks including relative and absolute dating.
The geological timescale, principles of stratigraphy, and methods of dating rocks including relative and absolute dating.
The geological timescale, principles of stratigraphy, and methods of dating rocks including relative and absolute dating.
For Geological Time & Stratigraphy, you must know:
Q: State the three main principles of stratigraphy.
Q: What makes a good index fossil?
Q: How does radiometric dating work?
Q: What is the difference between relative and absolute dating?
Q: Name the four main eras of the Phanerozoic Eon in order.
✗ Superposition applies to all rock types ✓ Superposition applies to SEDIMENTARY and volcanic rocks deposited in layers; it does not apply to intrusive igneous rocks or metamorphic rocks that have been restructured
✗ Radiometric dating can be used on any rock ✓ Radiometric dating requires minerals with suitable radioactive isotopes; sedimentary rocks cannot be directly dated (they give the age of the source material, not deposition); igneous and metamorphic minerals are typically used
✗ The geological timescale is based on radiometric dating alone ✓ The timescale was originally built using relative dating (fossils and stratigraphy); radiometric dating later provided absolute ages to calibrate it
Explain the principles of stratigraphy and describe how both relative and absolute dating methods are used to determine the age of rocks. [6 marks]
Stratigraphy uses key principles to determine relative ages. The principle of superposition states that in undisturbed sedimentary sequences, the oldest beds are at the bottom and youngest at the top. The principle of original horizontality states that sedimentary rocks are deposited horizontally; any tilting indicates post-depositional deformation. The principle of cross-cutting relationships states that a feature cutting across another (e.g. a dyke cutting a sedimentary bed) must be younger than what it cuts. Index fossils further refine relative dating: organisms with short time ranges and wide distributions (e.g. ammonites, graptolites) allow correlation of rock layers across different regions. Fossil succession shows that organisms have evolved in a definite order, so the same fossil assemblage indicates the same relative age worldwide. Absolute dating uses radioactive decay: unstable parent isotopes (e.g. uranium-238, potassium-40) decay to stable daughter isotopes at a fixed rate (half-life). By measuring the parent/daughter ratio in a mineral, its crystallisation age can be calculated. For example, U-Pb dating of zircon in igneous rocks gives the eruption age. Absolute dating calibrates the relative timescale, providing numerical ages for geological periods. Together, these methods build the geological timescale spanning 4.6 billion years.
AO1 (Knowledge & Understanding): Demonstrate knowledge and understanding of geological time & stratigraphy, including key geological concepts, observational data and theoretical models relevant to OCR J357.
AO2 (Application of Knowledge): Apply knowledge and understanding of geological time & stratigraphy to both familiar and unfamiliar geological contexts, using field evidence and theoretical principles to explain phenomena.
AO3 (Analysis & Evaluation): Analyse geological data related to geological time & stratigraphy, evaluate evidence from observations and investigations, and construct reasoned arguments using scientific methodology.
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