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Related Concept Videos

Toroids01:27

Toroids

A toroid is a closely wound donut-shaped coil constructed using a single conducting wire. In general, it is assumed that a toriod consists of multiple circular loops perpendicular to its axis.
When connected to a supply, the magnetic field generated in the toroid has field lines circular and concentric to its axis. Conventionally, the direction of this magnetic field is expressed using the right-hand rule. If the fingers of the right hand curl in the current direction, the thumb points in the...
Outer Layers of the Cell Envelope01:18

Outer Layers of the Cell Envelope

The outermost layers of prokaryotic cells play a critical role in their survival, virulence, and interaction with the environment. These layers, often composed of polysaccharides, polypeptides, or proteins, form protective and adhesive structures that vary in organization and function.Capsules and Slime LayersCapsules are highly organized, tightly bound layers that firmly attach to the bacterial cell wall. Capsules are usually made of polysaccharides, though some are made of polypeptides. These...
Magnetic Field Lines01:19

Magnetic Field Lines

The representation of magnetic fields by magnetic field lines is very useful in visualizing the strength and direction of the magnetic field. Each of the magnetic field lines forms a closed loop. The field lines emerge from the north pole (N), loop around to the south pole (S), and continue through the bar magnet back to the north pole.
Magnetic field lines follow several hard-and-fast rules:
Nuclear Fusion02:45

Nuclear Fusion

The process of converting very light nuclei into heavier nuclei is also accompanied by the conversion of mass into large amounts of energy, a process called fusion. The principal source of energy in the sun is a net fusion reaction in which four hydrogen nuclei fuse and ultimately produce one helium nucleus and two positrons.
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Divergence and Curl of Magnetic Field01:26

Divergence and Curl of Magnetic Field

The magnetic field due to a volume current distribution given by the Biot–Savart Law can be expressed as follows:
Diamagnetic Shielding of Nuclei: Local Diamagnetic Current01:14

Diamagnetic Shielding of Nuclei: Local Diamagnetic Current

An applied magnetic field causes the electrons present in the molecule to circulate, setting up a local diamagnetic current within the molecule. The local diamagnetic current arising from circulating sigma-bonding electrons induces a magnetic field, Blocal that opposes the applied magnetic field, B0. The effective magnetic field experienced by these nuclei is given by the difference between the applied and local magnetic fields in a phenomenon called local diamagnetic shielding. Essentially,...

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Related Experiment Video

Updated: May 10, 2026

Simulation of the Planetary Interior Differentiation Processes in the Laboratory
06:04

Simulation of the Planetary Interior Differentiation Processes in the Laboratory

Published on: November 15, 2013

Candy Wrapper for the Earth's inner core.

M Mattesini1, A B Belonoshko, H Tkalčić

  • 1Departamento de Física de la Tierra, Astronomía y Astrofísica I, Universidad Complutense de Madrid, E-28040 Madrid, Spain. mmattesi@ucm.es

Scientific Reports
|June 29, 2013
PubMed
Summary

This study reveals a complex, mosaic-like structure within Earth's inner core. Different iron crystal arrangements explain the observed hemispherical anisotropy and seismic travel-time data.

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Last Updated: May 10, 2026

Simulation of the Planetary Interior Differentiation Processes in the Laboratory
06:04

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Published on: November 15, 2013

Metal-silicate Partitioning at High Pressure and Temperature: Experimental Methods and a Protocol to Suppress Highly Siderophile Element Inclusions
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Sediment Core Sectioning and Extraction of Pore Waters under Anoxic Conditions
09:21

Sediment Core Sectioning and Extraction of Pore Waters under Anoxic Conditions

Published on: March 7, 2016

Area of Science:

  • Geophysics
  • Seismology
  • Mineral Physics

Background:

  • Seismic data reveal complex structures and anisotropy in Earth's inner core.
  • Dynamic mechanisms are proposed to explain these seismological observations.

Purpose of the Study:

  • Re-investigate inner core hemispherical dichotomy and anisotropy.
  • Bridge seismic observations (PKP(bc-df) travel-times) with first-principles iron elastic properties.

Main Methods:

  • Utilized PKP(bc-df) differential travel-time data.
  • Employed first-principles calculations for iron (bcc/hcp) elastic properties.
  • Introduced the 'Candy Wrapper' velocity model.

Main Results:

  • Proposed a dynamic inner core model with eastward material drift.
  • Demonstrated that different iron crystal shapes stabilize in the two hemispheres.
  • Showed seismological data align with a mosaic-like inner core structure.

Conclusions:

  • The western hemisphere exhibits anisotropic properties due to distinct iron crystal patches.
  • The eastern hemisphere shows weak anisotropy, composed of indistinguishable iron phases.
  • The 'Candy Wrapper' model provides a dynamic explanation for inner core heterogeneity.