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Philip Kim and Quantum Hall effect

Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.

Difference between Philip Kim and Quantum Hall effect

Philip Kim vs. Quantum Hall effect

Philip Kim is a condensed matter physicist known for study of quantum transport in carbon nanotubes and graphene, including observations of quantum Hall effects in graphene. The quantum Hall effect (or integer quantum Hall effect) is a quantum-mechanical version of the Hall effect, observed in two-dimensional electron systems subjected to low temperatures and strong magnetic fields, in which the Hall conductance undergoes quantum Hall transitions to take on the quantized values where is the channel current, is the Hall voltage, is the elementary charge and is Planck's constant.

Similarities between Philip Kim and Quantum Hall effect

Philip Kim and Quantum Hall effect have 2 things in common (in Unionpedia): Fractional quantum Hall effect, Graphene.

Fractional quantum Hall effect

The fractional quantum Hall effect (FQHE) is a physical phenomenon in which the Hall conductance of 2D electrons shows precisely quantised plateaus at fractional values of e^2/h.

Fractional quantum Hall effect and Philip Kim · Fractional quantum Hall effect and Quantum Hall effect · See more »

Graphene

Graphene is a semi-metal with a small overlap between the valence and the conduction bands (zero bandgap material).

Graphene and Philip Kim · Graphene and Quantum Hall effect · See more »

The list above answers the following questions

Philip Kim and Quantum Hall effect Comparison

Philip Kim has 33 relations, while Quantum Hall effect has 47. As they have in common 2, the Jaccard index is 2.50% = 2 / (33 + 47).

References

This article shows the relationship between Philip Kim and Quantum Hall effect. To access each article from which the information was extracted, please visit:

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