Transition Metal Oxides
E1560867
UNEXPLORED
Transition Metal Oxides is a seminal scientific monograph by C. N. R. Rao that systematically explores the structure, electronic properties, and diverse applications of oxides containing transition metals.
All labels observed (1)
| Label | Occurrences |
|---|---|
| Transition Metal Oxides canonical | 1 |
How this entity was disambiguated
This entity first appeared as the object of triple T22904007 — resolving that mention is where its identity was fixed. The disambiguator weighed these candidate entities and picked the highlighted one (or “None”, minting a new entity). This is how homonymy is resolved: the same surface form can point to different entities.
NED1
Entity disambiguation (via context triple)
gpt-5-mini-2025-08-07
Target entity: Transition Metal Oxides Context triple: [C. N. R. Rao, notableWork, Transition Metal Oxides]
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A.
Organotransition Metal Chemistry: From Bonding to Catalysis
"Organotransition Metal Chemistry: From Bonding to Catalysis" is a comprehensive graduate-level textbook that systematically develops the principles of organometallic bonding and reactivity with a strong emphasis on their applications in homogeneous catalysis.
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B.
Advanced Materials
Advanced Materials is a leading peer-reviewed scientific journal that publishes cutting-edge research on materials science, including nanotechnology, biomaterials, and electronic materials.
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C.
Advanced Inorganic Chemistry (with F. Albert Cotton)
Advanced Inorganic Chemistry (with F. Albert Cotton) is a seminal graduate-level textbook that systematically presents the principles, structures, bonding, and reactivity of inorganic compounds and has long been a standard reference in the field.
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D.
Advanced Functional Materials
Advanced Functional Materials is a leading peer-reviewed scientific journal focusing on cutting-edge research in materials science and advanced functional materials.
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E.
Wagner theory of internal oxidation
The Wagner theory of internal oxidation is a foundational model in materials science that explains how oxygen diffuses into alloys and selectively oxidizes certain components beneath the surface, influencing corrosion behavior and high-temperature material performance.
- F. None of above. chosen
- G. Unsure - the case is ambiguous/there is not enough information to decide.
NED2
Entity disambiguation (via description)
gpt-5-mini-2025-08-07
Target entity: Transition Metal Oxides Target entity description: Transition Metal Oxides is a seminal scientific monograph by C. N. R. Rao that systematically explores the structure, electronic properties, and diverse applications of oxides containing transition metals.
-
A.
Organotransition Metal Chemistry: From Bonding to Catalysis
"Organotransition Metal Chemistry: From Bonding to Catalysis" is a comprehensive graduate-level textbook that systematically develops the principles of organometallic bonding and reactivity with a strong emphasis on their applications in homogeneous catalysis.
-
B.
Advanced Materials
Advanced Materials is a leading peer-reviewed scientific journal that publishes cutting-edge research on materials science, including nanotechnology, biomaterials, and electronic materials.
-
C.
Advanced Inorganic Chemistry (with F. Albert Cotton)
Advanced Inorganic Chemistry (with F. Albert Cotton) is a seminal graduate-level textbook that systematically presents the principles, structures, bonding, and reactivity of inorganic compounds and has long been a standard reference in the field.
-
D.
Advanced Functional Materials
Advanced Functional Materials is a leading peer-reviewed scientific journal focusing on cutting-edge research in materials science and advanced functional materials.
-
E.
Wagner theory of internal oxidation
The Wagner theory of internal oxidation is a foundational model in materials science that explains how oxygen diffuses into alloys and selectively oxidizes certain components beneath the surface, influencing corrosion behavior and high-temperature material performance.
- F. None of above. chosen
Referenced by (1)
Full triples — surface form annotated when it differs from this entity's canonical label.