
Carbonatites, October 2021, Vol. 17, No. 5
June 28, 2024
Cement And Concrete: From The Romans To Mars, October 2022, Vol. 18, No. 5
June 28, 2024Heavy Stable Isotopes: From Crystals To Planets, December 2021, Vol. 17, No. 6
$20.00
Since their discovery in 1913, stable isotopes have become formidable tracers of physicochemical processes at all scales. Steady advances in mass spectrometry have allowed isotopic inquiries to move from the so-called “traditional” systems (i.
Heavy Stable Isotopes: From Crystals To Planets
December 2021, Vol. 17, No. 6
Since their discovery in 1913, stable isotopes have become formidable tracers of physicochemical processes at all scales. Steady advances in mass spectrometry have allowed isotopic inquiries to move from the so-called “traditional” systems (i.e., H, C, N, O, and S) to heavier “non traditional” systems (e.g., Fe, Mo, Ti, Zr, U) whose diverse geochemical characteristics are providing novel and complementary insights. Moving from micron-size systems (single crystals) to planetary-size bodies, the articles in this issue explore the enormous range of temporal and physical scales over which heavy stable isotopes have provided paradigm-shifting insights into the evolution of our planet and solar system. We also highlight new frontiers where novel stable isotope systematics appear particularly promising for unraveling longstanding questions.
Why You’ll Love Elements Magazine:
- Expert Contributors: Articles written by renowned researchers in the field of geoscience.
- Engaging Content: Join a community of readers who are passionate about Elements.
- Exceptional Quality: Each issue is printed on high-quality paper with stunning visuals and detailed illustrations that bring complex scientific concepts to life.
Order your copy of the December 2021 issue of Elements magazine today and explore heavy stable isotopes: from crystals to planets.
Related products
-
Supervolcanoes, February 2008, Vol. 4, No. 1
$20.00Explosive super-eruptions from large volume, shallow magma systems lead to enormous and devastating pyroclastic flows, the formation of gigantic collapse calderas, and deposition of volcanic ash over continent-sized areas. Recognition that future eruptions from these “supervolcanoes” will undoubtedly have severe impacts on society—and perhaps on life itself—has led to recent public and media interest.
-
Large Igneous Provinces: Origin And Environmental Consequences, December 2005, Vol. 1, No. 5
$20.00Large igneous provinces record major outpourings of igneous rocks, both on the continents and in ocean basins. Their origin is still vigorously disputed, with models invoking mantle plumes, thermal effects of the lithosphere, and meteorite impacts.
-
Genesis: Rocks, Minerals, And The Geochemical Origin Of Life, June 2005, Vol. 1, No. 3
$20.00Few scientific questions so capture the public imagination, or provoke such lively debate, as how life on Earth emerged. In this issue of Elements, four of the most creative minds in origins research present their original insights on the geochemical origins of life.