R Maddin
Biographic Data
| ID | 280603 |
|---|---|
| NAME | R Maddin |
| GIVEN NAMES | R |
| FAMILY NAME | Maddin |
| SIGNATURE | MADDIN R |
| AFFILIATIONS | Robert S. Peabody Museum of Archaeology |
| VERIFIED | No |
| TOTAL WORKS | 10 |
| TOTAL CITATIONS | 39 |
| AUTHOR COUNT | 10 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 1980 |
| LATEST PUBLICATION YEAR | 1987 |
| H-INDEX | 4 |
Metallurgical Analysis From Sarazm, Tadjikistan SSR
Recent excavations of the Bronze Age site of Sarazm (35W2000 B.C., uncalibrated) were undertaken by a collaborative team of archaeologists from the U.S.S.R. and U.S.A. The site is located in the Zeraoshan Valley in Tadjikistan SSR. A series of radiocarbon dates are presented as well as the analysis of 8 metallurgical samples. This Bronze Age site represents the easternmost extension in central Asia of an urban community with a rich metallurgical …
Kodo Zuroku
Iron in Anatolia and the Nature of the Hittite Iron Industry
The development of the skills necessary for working in iron, making possible the transition from the Bronze Age to the Iron Age, has long been regarded as one of the major break-throughs in man's technological history. For Lewis Henry Morgan, writing in 1877, the smelting of iron ore was a development on a par with the domestication of animals (Morgan 1877:39): “The most advanced portion of the human race were halted, so to express it, at certain…
A Steel Pick from Mt. Adir in Palestine
Old Kingdom Models from the Tomb of Impy
Old Kingdom Models from the Tomb of Impy
Bronze Age Steel From Pella, Jordan
Iron at Taanach and Early Iron Metallurgy in the Eastern Mediterranean
A group of iron artifacts with a terminus ante quem of ca. 925 B.C. from Taanach in Palestine was studied metallurgically in order to see if they would yield any evidence pertinent to understanding the technological background of the early Iron Age. The results suggest that by the late tenth century blacksmiths supplying northern Palestine were able to produce carburized iron (steel), which is a product superior to bronze. Complementary studies o…
Iron at Taanach and Early Iron Metallurgy in the Eastern Mediterranean
Distinguishing artifacts made of native copper
Distinguishing artifacts made of native copper
Iron in Anatolia and the Nature of the Hittite Iron Industry
The development of the skills necessary for working in iron, making possible the transition from the Bronze Age to the Iron Age, has long been regarded as one of the major break-throughs in man's technological history. For Lewis Henry Morgan, writing in 1877, the smelting of iron ore was a development on a par with the domestication of animals (Morgan 1877:39): “The most advanced portion of the human race were halted, so to express it, at certain…
Iron at Taanach and Early Iron Metallurgy in the Eastern Mediterranean
A group of iron artifacts with a terminus ante quem of ca. 925 B.C. from Taanach in Palestine was studied metallurgically in order to see if they would yield any evidence pertinent to understanding the technological background of the early Iron Age. The results suggest that by the late tenth century blacksmiths supplying northern Palestine were able to produce carburized iron (steel), which is a product superior to bronze. Complementary studies o…
Bronze Age Steel From Pella, Jordan
Metallurgical Analysis From Sarazm, Tadjikistan SSR
Recent excavations of the Bronze Age site of Sarazm (35W2000 B.C., uncalibrated) were undertaken by a collaborative team of archaeologists from the U.S.S.R. and U.S.A. The site is located in the Zeraoshan Valley in Tadjikistan SSR. A series of radiocarbon dates are presented as well as the analysis of 8 metallurgical samples. This Bronze Age site represents the easternmost extension in central Asia of an urban community with a rich metallurgical …
A Steel Pick from Mt. Adir in Palestine
Distinguishing artifacts made of native copper
Iron at Taanach and Early Iron Metallurgy in the Eastern Mediterranean
A group of iron artifacts with a terminus ante quem of ca. 925 B.C. from Taanach in Palestine was studied metallurgically in order to see if they would yield any evidence pertinent to understanding the technological background of the early Iron Age. The results suggest that by the late tenth century blacksmiths supplying northern Palestine were able to produce carburized iron (steel), which is a product superior to bronze. Complementary studies o…
Iron at Taanach and Early Iron Metallurgy in the Eastern Mediterranean
Old Kingdom Models from the Tomb of Impy
Old Kingdom Models from the Tomb of Impy
Bronze Age Steel From Pella, Jordan
Kodo Zuroku
Iron in Anatolia and the Nature of the Hittite Iron Industry
The development of the skills necessary for working in iron, making possible the transition from the Bronze Age to the Iron Age, has long been regarded as one of the major break-throughs in man's technological history. For Lewis Henry Morgan, writing in 1877, the smelting of iron ore was a development on a par with the domestication of animals (Morgan 1877:39): “The most advanced portion of the human race were halted, so to express it, at certain…
A Steel Pick from Mt. Adir in Palestine
Metallurgical Analysis From Sarazm, Tadjikistan SSR
Recent excavations of the Bronze Age site of Sarazm (35W2000 B.C., uncalibrated) were undertaken by a collaborative team of archaeologists from the U.S.S.R. and U.S.A. The site is located in the Zeraoshan Valley in Tadjikistan SSR. A series of radiocarbon dates are presented as well as the analysis of 8 metallurgical samples. This Bronze Age site represents the easternmost extension in central Asia of an urban community with a rich metallurgical …
Metallurgy and Cultural Artifacts (8 works) · Archaeology (7 works) · History (7 works) · Ancient history (6 works) · Archaeology and ancient environmental studies (4 works) · Archaeology and Historical Studies (4 works) · Computer Science (4 works) · Geography (4 works) · Materials Science (4 works) · Metallurgy (4 works)