Nikolai N Kovaliukh
Dados Biográficos
| ID | 4979587 |
|---|---|
| NOME | Nikolai N Kovaliukh |
| PRENOMES | Nikolai N |
| SOBRENOME | Kovaliukh |
| ASSINATURA | KOVALIUKH N N |
| AFILIAÇÕES | National Academy of Sciences of Ukraine |
| ORCID | 0000-0002-9633-742X |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 5 |
| TOTAL DE CITAÇÕES | 44 |
| TOTAL COMO AUTOR | 5 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 1997 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2003 |
| ÍNDICE H | 3 |
Settlement and economy in Neolithic Ukraine
The authors use their revised chronology for the Mariupol-type cemeteries (presented in Antiquity 76: 356-63 (2002)) to offer a new sequence for Neolithic settlement and economy in Ukraine. They find that the transition to the Neolithic began about 6500 cal BC, but co-existed with Mesolithic communities for a further millennium. In about 4500 cal BC early copper age cultures appeared, which in turn coexisted with the Neolithic in neighbouring are…
The chronology of the Mariupol-type cemeteries of Ukraine re-visited
Recent results of radiocarbon analyses from sites in Ukraine suggest that a revision of the chronology of the Late mesolithic and early Neolithic is required. The subsequent Neolithic period up to the beginning of the Early Bronze Age (c.3000 cal BC) should be divided into two separate periods, the Neolithic and Neo-eneolithic
C Cycle in the Hot Zone Around Chernobyl
Radiocarbon from the Chernobyl accident was released mainly in two forms: fine dispersed reactor graphite, and carbon dioxide from burning graphite. The CO 2 was partly assimilated by annual and perennial vegetation. Reactor graphite dispersed over a wide territory was taken up biochemically by micromicetes, transforming non-organic carbon of the reactor graphite into organic matter. Organic matter of micromicetes is the main nutrition product fo…
Recent Developments in the Procedures Used at the Sscer Laboratory for the Routine Preparation of Lithium Carbide
In this paper we describe and discuss the advantages from improvements in equipment design and operating procedures developed at the State Scientific Centre of Environmental Radiogeochemistry (SSCER) laboratory in Kiev. Two experimental areas are considered, viz . 1. The direct chemisorption into a lithium alloy of carbonaceous gases produced by the controlled thermal degradation (pyrolysis) of organic materials under vacuum . This approach offer…
The Chronology of the Subotiv Settlement
Samples collected at the Chornoliska culture site near the village of Subotiv, Cherkasy region during the 1994–1995 Ukrainian-German expedition were radiocarbon dated in Kiev. The foundation of the Subotiv settlement dates to 1300–1200 cal BC. A skeleton found in one of the buildings at this site is dated at the end of the early period (between 1120 and 1040 cal BC). In the youngest part (a small town) of the Subotiv settlement, we found the rema…
Recent Developments in the Procedures Used at the Sscer Laboratory for the Routine Preparation of Lithium Carbide
In this paper we describe and discuss the advantages from improvements in equipment design and operating procedures developed at the State Scientific Centre of Environmental Radiogeochemistry (SSCER) laboratory in Kiev. Two experimental areas are considered, viz . 1. The direct chemisorption into a lithium alloy of carbonaceous gases produced by the controlled thermal degradation (pyrolysis) of organic materials under vacuum . This approach offer…
Settlement and economy in Neolithic Ukraine
The authors use their revised chronology for the Mariupol-type cemeteries (presented in Antiquity 76: 356-63 (2002)) to offer a new sequence for Neolithic settlement and economy in Ukraine. They find that the transition to the Neolithic began about 6500 cal BC, but co-existed with Mesolithic communities for a further millennium. In about 4500 cal BC early copper age cultures appeared, which in turn coexisted with the Neolithic in neighbouring are…
The chronology of the Mariupol-type cemeteries of Ukraine re-visited
Recent results of radiocarbon analyses from sites in Ukraine suggest that a revision of the chronology of the Late mesolithic and early Neolithic is required. The subsequent Neolithic period up to the beginning of the Early Bronze Age (c.3000 cal BC) should be divided into two separate periods, the Neolithic and Neo-eneolithic
C Cycle in the Hot Zone Around Chernobyl
Radiocarbon from the Chernobyl accident was released mainly in two forms: fine dispersed reactor graphite, and carbon dioxide from burning graphite. The CO 2 was partly assimilated by annual and perennial vegetation. Reactor graphite dispersed over a wide territory was taken up biochemically by micromicetes, transforming non-organic carbon of the reactor graphite into organic matter. Organic matter of micromicetes is the main nutrition product fo…
The Chronology of the Subotiv Settlement
Samples collected at the Chornoliska culture site near the village of Subotiv, Cherkasy region during the 1994–1995 Ukrainian-German expedition were radiocarbon dated in Kiev. The foundation of the Subotiv settlement dates to 1300–1200 cal BC. A skeleton found in one of the buildings at this site is dated at the end of the early period (between 1120 and 1040 cal BC). In the youngest part (a small town) of the Subotiv settlement, we found the rema…
C Cycle in the Hot Zone Around Chernobyl
Radiocarbon from the Chernobyl accident was released mainly in two forms: fine dispersed reactor graphite, and carbon dioxide from burning graphite. The CO 2 was partly assimilated by annual and perennial vegetation. Reactor graphite dispersed over a wide territory was taken up biochemically by micromicetes, transforming non-organic carbon of the reactor graphite into organic matter. Organic matter of micromicetes is the main nutrition product fo…
Recent Developments in the Procedures Used at the Sscer Laboratory for the Routine Preparation of Lithium Carbide
In this paper we describe and discuss the advantages from improvements in equipment design and operating procedures developed at the State Scientific Centre of Environmental Radiogeochemistry (SSCER) laboratory in Kiev. Two experimental areas are considered, viz . 1. The direct chemisorption into a lithium alloy of carbonaceous gases produced by the controlled thermal degradation (pyrolysis) of organic materials under vacuum . This approach offer…
The Chronology of the Subotiv Settlement
Samples collected at the Chornoliska culture site near the village of Subotiv, Cherkasy region during the 1994–1995 Ukrainian-German expedition were radiocarbon dated in Kiev. The foundation of the Subotiv settlement dates to 1300–1200 cal BC. A skeleton found in one of the buildings at this site is dated at the end of the early period (between 1120 and 1040 cal BC). In the youngest part (a small town) of the Subotiv settlement, we found the rema…
The chronology of the Mariupol-type cemeteries of Ukraine re-visited
Recent results of radiocarbon analyses from sites in Ukraine suggest that a revision of the chronology of the Late mesolithic and early Neolithic is required. The subsequent Neolithic period up to the beginning of the Early Bronze Age (c.3000 cal BC) should be divided into two separate periods, the Neolithic and Neo-eneolithic
Settlement and economy in Neolithic Ukraine
The authors use their revised chronology for the Mariupol-type cemeteries (presented in Antiquity 76: 356-63 (2002)) to offer a new sequence for Neolithic settlement and economy in Ukraine. They find that the transition to the Neolithic began about 6500 cal BC, but co-existed with Mesolithic communities for a further millennium. In about 4500 cal BC early copper age cultures appeared, which in turn coexisted with the Neolithic in neighbouring are…
Ancient and Medieval Archaeology Studies (3 obras) · Ancient history (3 obras) · Archaeology (3 obras) · Archaeology and ancient environmental studies (3 obras) · Art (3 obras) · Chronology (3 obras) · Geography (3 obras) · History (3 obras) · Radiocarbon dating (3 obras) · Bronze Age (2 obras)