J S Park
Biographic Data
| ID | 29663 |
|---|---|
| NAME | J S Park |
| GIVEN NAMES | J S |
| FAMILY NAME | Park |
| SIGNATURE | PARK J S |
| AFFILIATIONS | Hongik University |
| ORCID | 0000-0002-8440-0778 |
| VERIFIED | Yes |
| TOTAL WORKS | 7 |
| TOTAL CITATIONS | 9 |
| AUTHOR COUNT | 7 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2005 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 2 |
The Transition in Indian Iron Technology With the Use of High‐Carbon Crucible Steel in the Mid‐1st Millennium bc
Studies of the role played by crucible steel in the evolution of early iron technology in India lag far behind its long‐standing reputation as a key historical material with unique functional properties. A comparative metallographic study found evidence of a crucible steel‐driven technological transition reflected in the numerous awl‐shaped iron objects from two archaeological sites in Maharashtra, India. Those in the first group were recovered f…
Emotional arousal enhances narrative memories through functional integration of large-scale brain networks
Intact archeological human bones and age at death studied with transmission x‐ray diffraction and small angle x‐ray scattering
High‐energy, wide‐angle x‐ray scattering (WAXS, x‐ray diffraction) and small‐angle x‐ray scattering (SAXS) were used to study intact human second metacarpal bones (mc2) from two UK archeological sites. A novel method correcting for irregular mass distribution was applied in these transmission geometry experiments done at beamline 1‐ID of the Advanced Photon Source. The authors asked whether there were age‐at‐death‐related changes in carbonated ap…
The Technological and Chronological Implication of 14C Concentrations in Carbon Samples Extracted from Mongolian Cast Iron Artifacts
Cast iron objects recovered primarily in eastern Mongolia, spanning the Xiongnu through the Early Historic periods (ca. 3rd BC–AD 17th century), were examined for their radiocarbon ( 14 C) concentration and microstructure. Most of the samples examined were found to have originated from charcoal-based smelting with a few exceptions that were made using a mineral coal-based technique. A comparison of 14 C dates with dates derived from artifact typo…
A novel obesity model. Human synphilin-1 transgenic drosophila
A Thermal and Acid Treatment for Carbon Extraction from Cast Iron and Its Application to Ams Dating of Cast Iron Objects from Ancient Korea
A method of thermal and acid treatments was developed at the Archaeo-metallurgy Laboratory of Hongik University in Korea to extract carbon from cast iron, and carbon objects thus prepared from cast iron artifacts of ancient Korea were dated at the University of Arizona's AMS Facility. The thermal treatments consist of heating a specimen to ∼1000 °C in a controlled environment with reduced oxygen potential, then cooling it rapidly to room temperat…
Estimation of the Age of a Pre‐industrial Iron Site in Korea
A pre‐industrial iron‐smelting site in Korea, whose period of active use is placed on typological grounds between the eighth and 18th centuries ad , has been dated using accelerator mass spectrometry and thermoluminescence. The ages of two charcoal samples were 77 ± 25 and 81 ± 25 years bp , with the calibrated date for both ranging from ad 1700 to ad 1955, while a clay fragment dated to ad 1650 ± 50. The results from typology and radiocarbon see…
The Technological and Chronological Implication of 14C Concentrations in Carbon Samples Extracted from Mongolian Cast Iron Artifacts
Cast iron objects recovered primarily in eastern Mongolia, spanning the Xiongnu through the Early Historic periods (ca. 3rd BC–AD 17th century), were examined for their radiocarbon ( 14 C) concentration and microstructure. Most of the samples examined were found to have originated from charcoal-based smelting with a few exceptions that were made using a mineral coal-based technique. A comparison of 14 C dates with dates derived from artifact typo…
A Thermal and Acid Treatment for Carbon Extraction from Cast Iron and Its Application to Ams Dating of Cast Iron Objects from Ancient Korea
A method of thermal and acid treatments was developed at the Archaeo-metallurgy Laboratory of Hongik University in Korea to extract carbon from cast iron, and carbon objects thus prepared from cast iron artifacts of ancient Korea were dated at the University of Arizona's AMS Facility. The thermal treatments consist of heating a specimen to ∼1000 °C in a controlled environment with reduced oxygen potential, then cooling it rapidly to room temperat…
Estimation of the Age of a Pre‐industrial Iron Site in Korea
A pre‐industrial iron‐smelting site in Korea, whose period of active use is placed on typological grounds between the eighth and 18th centuries ad , has been dated using accelerator mass spectrometry and thermoluminescence. The ages of two charcoal samples were 77 ± 25 and 81 ± 25 years bp , with the calibrated date for both ranging from ad 1700 to ad 1955, while a clay fragment dated to ad 1650 ± 50. The results from typology and radiocarbon see…
Estimation of the Age of a Pre‐industrial Iron Site in Korea
A pre‐industrial iron‐smelting site in Korea, whose period of active use is placed on typological grounds between the eighth and 18th centuries ad , has been dated using accelerator mass spectrometry and thermoluminescence. The ages of two charcoal samples were 77 ± 25 and 81 ± 25 years bp , with the calibrated date for both ranging from ad 1700 to ad 1955, while a clay fragment dated to ad 1650 ± 50. The results from typology and radiocarbon see…
A Thermal and Acid Treatment for Carbon Extraction from Cast Iron and Its Application to Ams Dating of Cast Iron Objects from Ancient Korea
A method of thermal and acid treatments was developed at the Archaeo-metallurgy Laboratory of Hongik University in Korea to extract carbon from cast iron, and carbon objects thus prepared from cast iron artifacts of ancient Korea were dated at the University of Arizona's AMS Facility. The thermal treatments consist of heating a specimen to ∼1000 °C in a controlled environment with reduced oxygen potential, then cooling it rapidly to room temperat…
A novel obesity model. Human synphilin-1 transgenic drosophila
The Technological and Chronological Implication of 14C Concentrations in Carbon Samples Extracted from Mongolian Cast Iron Artifacts
Cast iron objects recovered primarily in eastern Mongolia, spanning the Xiongnu through the Early Historic periods (ca. 3rd BC–AD 17th century), were examined for their radiocarbon ( 14 C) concentration and microstructure. Most of the samples examined were found to have originated from charcoal-based smelting with a few exceptions that were made using a mineral coal-based technique. A comparison of 14 C dates with dates derived from artifact typo…
Intact archeological human bones and age at death studied with transmission x‐ray diffraction and small angle x‐ray scattering
High‐energy, wide‐angle x‐ray scattering (WAXS, x‐ray diffraction) and small‐angle x‐ray scattering (SAXS) were used to study intact human second metacarpal bones (mc2) from two UK archeological sites. A novel method correcting for irregular mass distribution was applied in these transmission geometry experiments done at beamline 1‐ID of the Advanced Photon Source. The authors asked whether there were age‐at‐death‐related changes in carbonated ap…
Emotional arousal enhances narrative memories through functional integration of large-scale brain networks
The Transition in Indian Iron Technology With the Use of High‐Carbon Crucible Steel in the Mid‐1st Millennium bc
Studies of the role played by crucible steel in the evolution of early iron technology in India lag far behind its long‐standing reputation as a key historical material with unique functional properties. A comparative metallographic study found evidence of a crucible steel‐driven technological transition reflected in the numerous awl‐shaped iron objects from two archaeological sites in Maharashtra, India. Those in the first group were recovered f…
Archaeology and ancient environmental studies (5 works) · Carbon fibers (3 works) · Cultural Heritage Materials Analysis (3 works) · Materials Science (3 works) · Metallurgy (3 works) · Metallurgy and Cultural Artifacts (3 works) · Accelerator mass spectrometry (2 works) · Archaeology (2 works) · Charcoal (2 works) · Chemistry (2 works)