Conductive Composites (United States)
In research, Conductive Composites (United States) stands highest in Physical Sciences (#4,140 of 21,541 worldwide), over all time.
- World rank, all time
- #7,022 of 42,892
- Rank in United States
- #1,605 of 8,685
- Research works
- 225 ▲ 5% vs 2013–17
- Citations
- 5.4k 24.0 per fractional work
- Top-10% rate
- 4.4% record average 16.5%
- Open access
- 12% world 28%
What is Conductive Composites (United States) known for in research?
The fields where it stands highest, over all time, ranked among every institution above the floor in each field.
| Field | World rank | Where that sits | Top-10% rate | Works |
|---|---|---|---|---|
| Physical SciencesDomain | #4,140 of 21,541 | 27.8% | 209 |
Each strip is that field’s whole ranked pool, with the notch where Conductive Composites (United States) sits in it, in the colour of the band that rank falls in. The track under the rate is the rate itself: it carries no world mark, because the world rate differs by field (from about 6% to 21% in this record).
Field profile
Location quotient across every field it publishes in: outside the ring is more than an institution of this size would be expected to publish, inside it is less.
Rings at 0.5×, 1× and 2×. Widest outward: Health Professions, 13.7×. Every wedge is a field page.
Who are the top researchers at Conductive Composites (United States)?
Ranked on the composite score, K. Char and Philippe Luchsinger lead among researchers whose main affiliation is Conductive Composites (United States).
- 1 K. Char United States · #324,193 worldwide 305 citations · 66 works
- 2 Philippe Luchsinger United States · #468,811 worldwide 8 citations · 27 works
Which keywords describe research at Conductive Composites (United States)?
By fractional works in all years, weighted toward what it does more of than the world: Electronic Structure Calculations, Cuprate Superconductors, High-Temperature Superconductivity, Superconductivity, Electronic Structure, Spintronics, Artificial Neural Networks and Microwave Filters.
- Integrated Circuits
- Oxide Interfaces
- Quantum Spin Liquids
- Frequency Estimation
- Spin Dynamics
- Nanowires
- Thin Films
- Semiconductor Quantum Dots
- Biosensor Applications
- Biological Detection
- Magnetic Tunnel Junctions
- Superconducting Detectors
- Magnetocaloric Materials
- Room Temperature
- Quantum Computing
- Nanoparticles
- Microwave Filters
- Spintronics
- Superconductivity
- Cuprate Superconductors
- Electronic Structure Calculations
- High-Temperature Superconductivity
- Electronic Structure
- Artificial Neural Networks
- Substrate Integrated Waveguide
- Millimeter-Wave
- Metal-Insulator Transition
- Critical Current Density
- Perovskites
- Terahertz
- Skyrmions
- Acoustic Wave Biosensors
- Electron Spin
- Thin Film Resonators
- Digital Signal Processing
- Silicon Photonics
- Fourier Coefficients
- Frustrated Magnets
- Perovskite Oxides
- Two-Dimensional Electron Gases
Size is fractional works in all years in the topics tagged with each word; colour is the word's share of this institution's work against its share of the world's. The 40 words are chosen for being large and distinctive. Each links to the topic it comes from most.
All 40 words, with their numbers
- Electronic Structure Calculations45▲ 91×2 topics
- Cuprate Superconductors44▲ 204×1 topic
- High-Temperature Superconductivity44▲ 204×1 topic
- Superconductivity18▲ 27×7 topics
- Electronic Structure15▲ 32×4 topics
- Spintronics15▲ 32×3 topics
- Artificial Neural Networks10▲ 11×3 topics
- Microwave Filters10▲ 65×1 topic
- Substrate Integrated Waveguide10▲ 65×1 topic
- Nanoparticles10▲ 3.2×11 topics
- Millimeter-Wave9▲ 72×2 topics
- Quantum Computing8▲ 18×2 topics
- Metal-Insulator Transition8▲ 44×2 topics
- Room Temperature8▲ 20×3 topics
- Critical Current Density8▲ 62×2 topics
- Magnetocaloric Materials7▲ 64×1 topic
- Perovskites7▲ 64×1 topic
- Superconducting Detectors7▲ 251×1 topic
- Terahertz7▲ 68×1 topic
- Magnetic Tunnel Junctions7▲ 51×1 topic
- Skyrmions7▲ 51×1 topic
- Biological Detection6▲ 24×2 topics
- Acoustic Wave Biosensors6▲ 55×1 topic
- Biosensor Applications6▲ 22×2 topics
- Electron Spin6▲ 40×1 topic
- Semiconductor Quantum Dots6▲ 40×1 topic
- Thin Film Resonators6▲ 55×1 topic
- Thin Films6▲ 10×6 topics
- Digital Signal Processing6▲ 38×2 topics
- Nanowires6▲ 11×4 topics
- Silicon Photonics6▲ 16×2 topics
- Spin Dynamics6▲ 29×2 topics
- Fourier Coefficients6▲ 227×1 topic
- Frequency Estimation6▲ 227×1 topic
- Frustrated Magnets5▲ 50×1 topic
- Quantum Spin Liquids5▲ 50×1 topic
- Perovskite Oxides5▲ 29×2 topics
- Oxide Interfaces4▲ 45×1 topic
- Two-Dimensional Electron Gases4▲ 45×1 topic
- Integrated Circuits4▲ 8.4×3 topics
Which research topics does Conductive Composites (United States) publish most on?
By volume in 2022–2025: Artificial Intelligence in Healthcare, Hygrothermal properties of building materials, Corporate Law and Human Rights and Regulation and Compliance Studies.
Area is fractional works; colour is the subfield each topic belongs to.
- 1 Artificial Intelligence in Healthcare Health Information Management 2 works
- 2 Hygrothermal properties of building materials Building and Construction 0 works
- 3 Corporate Law and Human Rights Organizational Behavior and Human Resource Management 0 works
- 4 Regulation and Compliance Studies Strategy and Management 0 works
- 5 Hemoglobinopathies and Related Disorders Genetics 0 works
- 6 Semiconductor materials and devices Electrical and Electronic Engineering 0 works
- 7 Advancements in Semiconductor Devices and Circuit Design Electrical and Electronic Engineering 0 works
- 8 Diamond and Carbon-based Materials Research Materials Chemistry 0 works
- 9 Prostate Cancer Treatment and Research Pulmonary and Respiratory Medicine 0 works
- 10 Urinary Tract Infections Management Epidemiology 0 works
How open and international is its research?
Against the world’s own shares — the tick on each track. Both are shares of its output, so they sit on one scale and can be read against each other as well as against the world.
World: 28% of research is openly available.
World: 19% is written across borders.
How has Conductive Composites (United States)'s research output changed?
Output in 2018–2022 was 5% higher than in 2013–2017.
The same series as a ribbon — one cell per year, darker for more. The line above answers how much; this answers when.
Research measures only: rankings here say nothing about teaching, admissions or student experience. Comparable institutions and collaboration partners are in the interactive view on the map.