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Nuclear magnetic resonance: History & Applications

Nuclear magnetic resonance (NMR) is a physical phenomenon in which nuclei in a strong constant magnetic field are disturbed by a weak oscillating magnetic field (in the near field) and respond by producing an electromagnetic signal with a frequency characteristic of the magnetic field at the nucleus. This process occurs near resonance, when the…

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Nuclear magnetic resonance topic overview

The analysis highlights History and Applications as prominent areas in the source structure around Nuclear magnetic resonance.

Related topics
281
Source areas
7
Connected nodes
292
Extracted relationships
255
Concept neighborhoods
55
Bridge connections
292

What this topic covers Research coverage

Source areas are shown by the number of related topics found in each part of the analysis. Use smaller areas too: they can reveal specialized angles and content gaps.

NMR spectroscopy · 103 topics
Overview · 57 topics
Applications · 53 topics
Theory of nuclear magnetic resonance · 28 topics
History · 25 topics
Makers of NMR equipment · 12 topics
Video · 3 topics

Smaller areas are not necessarily less important. They contain fewer connections in this analysis and can be useful for finding specialized angles or coverage gaps.

Explore all related topics Closing gaps

Browse the complete topic structure, not only the most central items. Less prominent entities and concepts can reveal missing angles, specialized context and useful research gaps. Each item opens a new analysis centered on that subject.

Overview

History

Theory of nuclear magnetic resonance

NMR spectroscopy

Applications

Makers of NMR equipment

Video

  • Bibcode Bibcode (identifier)
  • Doi Doi (identifier)
  • PMID PMID (identifier)

Advanced semantic analysis

Deeper signals for content research, entity SEO and topical coverage. The plain-language headings explain what each technical view is useful for.

How Nuclear magnetic resonance connects Entity context

The extracted context around Nuclear magnetic resonance shows recurring relationship patterns in the source. For example, Nuclear magnetic resonance → Abragam, Advances, Akitt, Bernstein, Bibcode, Biological Systems, Biotechnology, Charles, Chary, Cheltenham, Chemistry, Clarendon Press, Clore, Current Opinion, Date, Encyclopedia, Establishing Molecular Connectivity, February, Flow Probes, Fraser Another extracted example is Nuclear magnetic resonance → An Interview, Bibcode, Chemistry, Developer, Documentary, English, Ernst, Freeview, Journal, Kurt Wuthrich' Freeview, Lukas Schwarzenbacher, Magnetic Resonance, Martin, MRIRichard Ernst, NL, NMR, Nobel Prize, Off Magic Angle Spinning, Pines, PMID. Use these groups to spot repeated connection types before inspecting the individual relationships.

Nuclear magnetic resonance

Top relations

related to Further reading · 85
Nuclear magnetic resonance → Abragam, Advances, Akitt, Bernstein, Bibcode, Biological Systems, Biotechnology, Charles, Chary, Cheltenham, Chemistry, Clarendon Press, Clore, Current Opinion, Date, Encyclopedia, Establishing Molecular Connectivity, February, Flow Probes, Fraser
related to Video · 29
Nuclear magnetic resonance → An Interview, Bibcode, Chemistry, Developer, Documentary, English, Ernst, Freeview, Journal, Kurt Wuthrich' Freeview, Lukas Schwarzenbacher, Magnetic Resonance, Martin, MRIRichard Ernst, NL, NMR, Nobel Prize, Off Magic Angle Spinning, Pines, PMID
related to Solid-state NMR spectroscopy · 21
Nuclear magnetic resonance → B0, Correct, CSA, Due, Gaussian, He, In, In MASS, Knight, MAS, MASS, NMR, Nottingham, Professor Raymond Andrew, RF, There, This, Though, UK, University
related to history · 18
Nuclear magnetic resonance → Edward Mills Purcell, Felix Bloch, Gerlach, In, Isidor Rabi, July, Method, NMR, NMR HR-30, Nobel Prize, Nuclear, October, Physics, Rabi, Russell, Stern, Varian, Varian Associates
related to Tutorial · 13
Nuclear magnetic resonance → Advanced Methods, Basic, Library NMR ConceptsNMR Course, Magnetic Resonance Spectroscopy, Measurement TechniquesNuclear Magnetic Resonance, NMR/MRI, NotesDownloadable NMR, Organic Chemistry, PDF, PowerPoint, Spectra Interpretation, Spectroscopy, Theoretical Foundations
related to Continuous-wave (CW) spectroscopy · 11
Nuclear magnetic resonance → Although NMR, As, B0, CW, FT, In, MHz, NMR, One, This, When
related to Data acquisition in the petroleum industry · 9
Nuclear magnetic resonance → Another, Because, From, Initial, NMR, NMR-logging, Nuclear, These, Unlike
related to Multi-dimensional NMR spectroscopy · 9
Nuclear magnetic resonance → In, Interactions, Multidimensional Fourier, NMR, Overhauser, The, There, Through-bond, Through-space
related to Chemistry · 8
Nuclear magnetic resonance → But, Dharmatti, Further, It, NMR, See, Spin, The
related to Medicine · 7
Nuclear magnetic resonance → Biochemical, For, However, In, NMR, The, These

Important terminology

Use these terms to understand the vocabulary surrounding the topic, not as a checklist for keyword stuffing.

Important terminology

nmr magnetic field resonance spin nuclear nuclei used frequency needed citation nucleus spectroscopy also chemical signal molecules sample magnetization time

Nuclear magnetic resonance relationships Subject–Predicate–Object triples

TTTA extracted 255 structured relationships around Nuclear magnetic resonance. Examples in this analysis include designing selective pulse sequences also effectively manage the fields induced by radiation damping → instance of → Other approaches and FLIPS → instance of → where T1 can be calculated using techniques. The table shows each extracted connection, where it came from and its confidence.

SubjectPredicateObjectConfidenceSrc
designing selective pulse sequences also effectively manage the fields induced by radiation dampinginstance ofOther approaches0.80text
FLIPSinstance ofwhere T1 can be calculated using techniques0.80text
2 Hinstance ofAdditional structural and chemical information may be obtained by performing double-quantum NMR experiments for pairs of spins or quadrupolar nuclei0.80text
proteins or even small nucleic acids.In 2002 Kurt Wüthrich shared the Nobel Prize in Chemistryinstance ofin particular for the determination of the structure of biopolymers0.80text
MAS or dipolar decoupling by RF pulsesinstance ofwithout special techniques0.80text
the observed spectrum is often only a broad Gaussian band for non-quadrupolar spins in a solidinstance ofwithout special techniques0.80text
in the head-groups of lipids.15 Ninstance oflimiting usefulness to smaller molecules and functional groups with a high degree of symmetry0.80text
spininstance oflimiting usefulness to smaller molecules and functional groups with a high degree of symmetry0.80text
catalysts.MedicineThe application of nuclear magnetic resonance best known to the general public is magnetic resonance imaging for medical diagnosisinstance ofor to study molecular structures0.80text
magnetic resonance microscopy in research settingsinstance ofor to study molecular structures0.80text
proton NMRinstance ofnotably in NMR spectroscopy0.80text
carbon-13 NMRinstance ofnotably in NMR spectroscopy0.80text

Related concept clusters Concept neighborhoods

The concept neighborhoods around Nuclear magnetic resonance bring nearby vocabulary together. In this analysis, examples include Resonance, Nuclear and Citation. Use the clusters to find adjacent concepts and terminology that may deserve separate research.

  • Nuclear magnetic resonance
    • Resonance
    • Nuclear
    • Citation
    • Needed
    • Spin
    • Spectroscopy
    • Nmr
    • Spins
    • Field
    • Used
    • Also
    • Chemical
  • nuclear magnetic resonance
    • Resonance
    • Field
    • Nuclear
    • Citation
    • Needed
    • Nmr
    • Spin
    • Spectroscopy
    • Nuclei
    • Frequency
    • Used
    • Also
  • nuclei
    • Citation
    • Needed
    • Resonance
    • Spin
    • Frequencies
    • Usually
    • Fields
    • Also
    • Chemical
    • Applied
    • Information
    • Magnetization
  • magnetic field
    • Resonance
    • Field
    • Magnetic
    • Nuclear
    • Frequency
    • Nuclei
    • Nmr
    • Magnetization
    • Spin
    • Needed
    • Citation
    • Applied
  • near field
    • Magnetic
    • Frequency
    • Nuclei
    • Magnetization
    • Nmr
    • Spin
    • Needed
    • Citation
    • Applied
    • Resonance
    • Nuclear
    • Nucleus
  • resonance
    • Spectroscopy
    • Used
    • Citation
    • Needed
    • Also
    • Chemical
    • Techniques
    • Information
    • Structure
    • Molecules
    • Spectra
    • Spin
  • magnetic
    • Resonance
    • Field
    • Nuclear
    • Nmr
    • Spin
    • Nuclei
    • Frequency
    • Citation
    • Needed
    • Also
    • Fields
    • Magnetization
  • nuclear magnetic resonance spectroscopy
    • Resonance
    • Field
    • Nuclear
    • Citation
    • Needed
    • Nmr
    • Spin
    • Spectroscopy
    • Nuclei
    • Frequency
    • Used
    • Also

Connections between topic areas Semantic bridges

For Nuclear magnetic resonance, one of the stronger structural bridges in this analysis connects Nuclear magnetic resonance with NMR spectroscopy. Bridges highlight paths between different parts of the map and can reveal research angles that are easy to miss in a flat list.

Min side: 3
Nuclear magnetic resonanceNMR spectroscopy · splits 187 ⟂ 106
Nuclear magnetic resonanceOverview · splits 233 ⟂ 60
Nuclear magnetic resonanceApplications · splits 239 ⟂ 54
Nuclear magnetic resonanceTheory of nuclear magnetic resonance · splits 264 ⟂ 29
Nuclear magnetic resonanceHistory · splits 267 ⟂ 26
Nuclear magnetic resonanceMakers of NMR equipment · splits 280 ⟂ 13
Nuclear magnetic resonanceVideo · splits 289 ⟂ 4

Map overview Semantic statistics

Nuclear magnetic resonance

Nodes293
Edges292
Triples255
Avg. degree1.99
Density0.006826
Components1

Source & methodology

TTTA analyzes the structure around Nuclear magnetic resonance to surface related topics, entities, relationships, concept neighborhoods and bridge connections. Use the map to explore areas such as History & Applications, including less central topics that may reveal useful research gaps. Automatically extracted connections are research leads rather than rewritten encyclopedia content.

Source: Wikipedia — Nuclear magnetic resonance · EN edition · Analysis: TopicsToTalkAbout

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