Class information for: |
Basic class information |
Class id | #P | Avg. number of references |
Database coverage of references |
---|---|---|---|
35024 | 103 | 18.5 | 33% |
Hierarchy of classes |
The table includes all classes above and classes immediately below the current class. |
Cluster id | Level | Cluster label | #P |
---|---|---|---|
18 | 4 | THERMODYNAMICS//ENERGY & FUELS//ENGINEERING, CHEMICAL | 531182 |
579 | 3 | BOLTZMANN EQUATION//JOURNAL OF NON-EQUILIBRIUM THERMODYNAMICS//MAGNETOGASDYNAMICS | 16197 |
4110 | 2 | PHOTON REST MASS//SCI CONSULTANTS//ATOM LEAD COUPLING | 567 |
35024 | 1 | ACOUSTIC GAS SENSOR//EFFECTIVE RELAXATION AREA//EFFECTIVE SPECIFIC HEAT CAPACITY | 103 |
Terms with highest relevance score |
rank | Term | termType | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
---|---|---|---|---|---|---|
1 | ACOUSTIC GAS SENSOR | authKW | 1185849 | 4% | 100% | 4 |
2 | EFFECTIVE RELAXATION AREA | authKW | 592925 | 2% | 100% | 2 |
3 | EFFECTIVE SPECIFIC HEAT CAPACITY | authKW | 592925 | 2% | 100% | 2 |
4 | SOUND RELAXATIONAL ABSORPTION | authKW | 592925 | 2% | 100% | 2 |
5 | ACOUSTIC ABSORPTION SPECTRAL PEAK | authKW | 296462 | 1% | 100% | 1 |
6 | ACOUSTIC HUMIDITY SENSOR | authKW | 296462 | 1% | 100% | 1 |
7 | ACOUSTIC MEASUREMENT OF GAS CONCENTRATION | authKW | 296462 | 1% | 100% | 1 |
8 | ACOUSTIC RELAXATION ATTENUATION | authKW | 296462 | 1% | 100% | 1 |
9 | ACOUSTIC RELAXATION ATTENUATION SPECTRUM | authKW | 296462 | 1% | 100% | 1 |
10 | ACOUSTIC RELAXATION PROCESS | authKW | 296462 | 1% | 100% | 1 |
Web of Science journal categories |
Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
---|---|---|---|---|---|
1 | Acoustics | 3325 | 34% | 0% | 35 |
2 | Audiology & Speech-Language Pathology | 3016 | 22% | 0% | 23 |
3 | Instruments & Instrumentation | 936 | 30% | 0% | 31 |
4 | Engineering, General | 154 | 10% | 0% | 10 |
5 | Electrochemistry | 149 | 11% | 0% | 11 |
6 | Chemistry, Analytical | 73 | 13% | 0% | 13 |
7 | Physics, Multidisciplinary | 50 | 12% | 0% | 12 |
8 | Optics | 24 | 8% | 0% | 8 |
9 | Physics, Applied | 19 | 12% | 0% | 12 |
10 | Thermodynamics | 8 | 3% | 0% | 3 |
Address terms |
Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
---|---|---|---|---|---|
1 | EMBEDDED INTERNET SYST | 296462 | 1% | 100% | 1 |
2 | GUIZHOU ELECT POWER BIG DATA | 296462 | 1% | 100% | 1 |
3 | BIG DATA COMP SCI | 148230 | 1% | 50% | 1 |
4 | MAT PROC CHARACTERIZAT S | 74114 | 1% | 25% | 1 |
5 | INOE | 59291 | 1% | 20% | 1 |
6 | ARTIFICIAL OL T GRP | 37056 | 1% | 13% | 1 |
7 | ESTGV | 37056 | 1% | 13% | 1 |
8 | MICROSYST SILICON TECHNOL | 29644 | 1% | 10% | 1 |
9 | HTW | 21174 | 1% | 7% | 1 |
10 | JOHN A VOLPE TRANSPORTAT SYST | 21174 | 1% | 7% | 1 |
Journals |
Rank | Term | Chi square | Shr. of publ. in class containing term |
Class's shr. of term's tot. occurrences |
#P with term in class |
---|---|---|---|---|---|
1 | PHYSICAL ACOUSTICS | 6893 | 1% | 2% | 1 |
2 | JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA | 6751 | 22% | 0% | 23 |
3 | TECHNISCHES MESSEN | 3624 | 3% | 0% | 3 |
4 | JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS | 3579 | 8% | 0% | 8 |
5 | NOISE CONTROL ENGINEERING JOURNAL | 2545 | 3% | 0% | 3 |
6 | RESEARCH & DEVELOPMENT | 2210 | 1% | 1% | 1 |
7 | SENSORS AND ACTUATORS B-CHEMICAL | 1909 | 11% | 0% | 11 |
8 | APPLIED ACOUSTICS | 821 | 3% | 0% | 3 |
9 | MEASUREMENT SCIENCE AND TECHNOLOGY | 811 | 5% | 0% | 5 |
10 | ACUSTICA | 534 | 2% | 0% | 2 |
Author Key Words |
Core articles |
The table includes core articles in the class. The following variables is taken into account for the relevance score of an article in a cluster c: (1) Number of references referring to publications in the class. (2) Share of total number of active references referring to publications in the class. (3) Age of the article. New articles get higher score than old articles. (4) Citation rate, normalized to year. |
Rank | Reference | # ref. in cl. |
Shr. of ref. in cl. |
Citations |
---|---|---|---|---|
1 | HU, Y , WANG, S , ZHU, M , ZHANG, KS , LIU, TT , XU, DY , (2014) ACOUSTIC ABSORPTION SPECTRAL PEAK LOCATION FOR GAS DETECTION.SENSORS AND ACTUATORS B-CHEMICAL. VOL. 203. ISSUE . P. 1 -8 | 14 | 100% | 3 |
2 | ZHANG, KS , DING, Y , ZHU, M , HU, MZ , WANG, S , XIAO, YQ , (2017) CALCULATING VIBRATIONAL MODE CONTRIBUTIONS TO SOUND ABSORPTION IN EXCITABLE GAS MIXTURES BY DECOMPOSING MULTI-RELAXATION ABSORPTION SPECTROSCOPY.APPLIED ACOUSTICS. VOL. 116. ISSUE . P. 195 -204 | 14 | 93% | 0 |
3 | ZHANG, KS , WANG, S , ZHU, M , DING, Y , HU, Y , (2013) DECOUPLING MULTIMODE VIBRATIONAL RELAXATIONS IN MULTI-COMPONENT GAS MIXTURES: ANALYSIS OF SOUND RELAXATIONAL ABSORPTION SPECTRA.CHINESE PHYSICS B. VOL. 22. ISSUE 1. P. - | 14 | 93% | 8 |
4 | YI, H , SHU, W , MING, Z , (2016) A RELAXATION TIMES COUPLING METHOD TO CONSTRUCT ACOUSTIC RELAXATION CALIBRATION FOR TWO-FREQUENCY MEASURING GAS COMPOSITIONS.APPLIED ACOUSTICS. VOL. 113. ISSUE . P. 102 -108 | 12 | 100% | 0 |
5 | ZHANG, KS , CHEN, LK , OU, WH , JIANG, XQ , LONG, F , (2015) A THEORY FOR MONITORING COMBUSTION OF NATURAL GAS BASED ON THE MAXIMUM POINT IN SOUND ABSORPTION SPECTRUM.ACTA PHYSICA SINICA. VOL. 64. ISSUE 5. P. - | 14 | 82% | 3 |
6 | ZHANG, KS , WANG, S , ZHU, M , DING, Y , (2013) ALGORITHM FOR CAPTURING PRIMARY RELAXATION PROCESSES IN EXCITABLE GASES BY TWO-FREQUENCY ACOUSTIC MEASUREMENTS.MEASUREMENT SCIENCE AND TECHNOLOGY. VOL. 24. ISSUE 5. P. - | 14 | 88% | 4 |
7 | ZHANG, KS , ZHU, M , TANG, WY , OU, WH , JIANG, XQ , (2016) ALGORITHM FOR RECONSTRUCTING VIBRATIONAL RELAXATION TIMES IN EXCITABLE GASES BY TWO-FREQUENCY ACOUSTIC MEASUREMENTS.ACTA PHYSICA SINICA. VOL. 65. ISSUE 13. P. - | 10 | 100% | 1 |
8 | PETCULESCU, A , LUEPTOW, RM , (2012) QUANTITATIVE ACOUSTIC RELAXATIONAL SPECTROSCOPY FOR REAL-TIME MONITORING OF NATURAL GAS: A PERSPECTIVE ON ITS POTENTIAL.SENSORS AND ACTUATORS B-CHEMICAL. VOL. 169. ISSUE . P. 121 -127 | 12 | 86% | 9 |
9 | ZHANG, KS , OU, WH , JIANG, XQ , LONG, F , HU, MZ , (2014) CALCULATION OF VIBRATIONAL RELAXATION TIMES IN MULTI-COMPONENT EXCITABLE GASES.JOURNAL OF THE KOREAN PHYSICAL SOCIETY. VOL. 65. ISSUE 7. P. 1028 -1035 | 10 | 100% | 2 |
10 | PETCULESCU, A , HALL, B , FRAENZLE, R , PHILLIPS, S , LUEPTOW, RM , (2006) A PROTOTYPE ACOUSTIC GAS SENSOR BASED ON ATTENUATION (L).JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA. VOL. 120. ISSUE 4. P. 1779-1782 | 11 | 100% | 17 |
Classes with closest relation at Level 1 |