John E Noakes
Datos Biográficos
| ID | 5597976 |
|---|---|
| NOMBRE | John E Noakes |
| NOMBRES | John E |
| APELLIDO | Noakes |
| FIRMA | NOAKES J E |
| AFILIACIONES | University of Georgia |
| VERIFICADO | No |
| TOTAL DE OBRAS | 17 |
| TOTAL DE CITAS | 80 |
| TOTAL COMO AUTOR | 17 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 1962 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2013 |
| ÍNDICE H | 4 |
The New 250kV Single Stage AMS System at Cais, University of Georgia
A new 250kV single stage AMS accelerator (SSAMS) was installed at the Center for Applied Isotope Studies, University of Georgia. The accelerator is intended to be used primarily for radiocarbon measurements of natural and biobased samples, while all other samples such as marine, geological, atmospheric and archaeological samples are measured on the decade-old 500kV compact tandem accelerator (CAMS). The new AMS system is equipped with a 134-catho…
Status of the AMS facility at the University of Georgia
Paleodietary analysis of the prehistoric population of the Canary Islands inferred from stable isotopes (carbon, nitrogen and hydrogen) in bone collagen
Paleonutritional and paleodietary survey on prehistoric humans from Las Cañadas del Teide (Tenerife, Canary Islands) based on chemical and histological analysis of bone
Low Background Liquid Scintillation Counting Using an Active Sample Holder and Pulse Discrimination Electronics
A Packard low-level liquid scintillation counting system is described which provides superior low-background beta-counting capability for 3 H and 14 C. The design is based on a novel pulse-discrimination circuit that separates background from valid scintillation pulses. Background discrimination is further enhanced by adding a plastic vial holder that acts as an anticoincidence guard. When excited by background radiation, the scintillation proper…
Radiocarbon dating of Danube Delta Deposits
The Holocene history of the Danube Delta has been studied using 14 C analyses of faunal material. The principal phases of development include: (1) initial Letea Caroarman spit, 11,700–9800 yr B.P. in its central part, 8800-5500 yr B.P. in its southern part; (2) Sf. Gheorghe I Delta, 8900-7200 yr B.P.; (3) Sulina Delta, 7200-2000 yr B.P., and (4) Sf. Gheorghe II Delta-Chilia Delta 2000 yr B.P.-present. Other smaller-scale features have also been d…
University of Georgia Radiocarbon Dates VII
Radiocarbon dates reported in this date list are totally derived from a cooperative effort between the Romanian Institute of Geology and Geophysics and the Center for Applied Isotope Studies (CAIS). The project was carried out between 1972 through 1978. The purpose of the study was to add to the knowledge of the various stages of the Holocene development of the Danube and Black Sea (Ghenea et al , 1971; Panin, 1976)
University of Georgia Radiocarbon Dates VI
The Geochronology Laboratory has recently changed its name to the Center for Applied Isotope Studies to reflect its steady and diversified expansion since its conception in 1969. Initially the laboratory was set up to offer age dating services to personnel at the University of Georgia. Subsequently, the laboratory expanded its activities so as to enable it to participate in studies of an applied and basic research nature
University of Georgia Radiocarbon Dates V
The following list of dates is compiled from samples prepared and catalogued since publication of our last date list (R, 1975, v 17, p 99-111). The counting equipment and operating procedures are the same. Ages are quoted with a 1σ counting error which includes statistical variation of the sample count as well as for background and standard, using ad 1950 as the reference year and 95% NBS oxalic acid for 14 C dating as the standard. The half-life…
University of Georgia Radiocarbon Dates IV
The following list of dates is compiled from samples prepared since publication of our last date list (R, 1974, v 16, p 131–141). The counting equipment and operating procedures are the same. Ages are quoted with a 1 σ counting error which includes statistical variation of the sample count as well as for background and standard, using ad 1950 as the reference year and 95% NBS oxalic acid for 14 C dating as the standard. The half-life value used i…
University of Georgia Radiocarbon Dates III
The following list of dates is of archaeologic samples submitted in 1971–2, using the counting equipment described in R, 1971, v 13, p 468. Ages are quoted with a 1σ counting error which includes statistical variation of the sample, background, and standard count. The reference year is ad 1950 and 0.95% NBS oxalic acid for 14 C dating is the standard. The half-life used is 5570 years
University of Georgia Radiocarbon Dates II
The following list of dates is compiled from samples prepared since publication of our last date list (R., 1971, v. 13, p. 468-474). The counting equipment and operating procedures are the same. Ages are quoted with a l σ counting error which includes statistical variation of the sample count as well as for the background and standard, using a.d. 1950 as the reference year and 0.95% NBS oxalic acid for C 14 dating as the standard. The half-life v…
University of Georgia Radiocarbon Dates I
The Geochronology Laboratory of the University of Georgia was established in the fall of 1969. The laboratory is housed in the basement of the Geology Building and is under the direction of the General Research Department. Radiocarbon dating facilities are the first to be developed in the laboratory. Other methods will be employed to date a wide spectrum of samples over extensive age ranges. Facilities of the laboratory are also available to coll…
Oak Ridge Associated Universities Radiocarbon Dates II
The Radiocarbon Dating Laboratories of the Oak Ridge Associated Universities (ORAU) has previously published radiocarbon dates under the Oak Ridge Institute of Nuclear Studies (ORINS) name. ORINS has recently changed its name to ORAU and its laboratories and programs have accordingly assumed this new name. The ORINS prefix, which previously designated the published radiocarbon dates of this laboratory, will be continued to minimize confusion in t…
Oak Ridge Institute of Nuclear Studies Radiocarbon Dates I
The Radiocarbon Dating Laboratory of the Oak Ridge Institute of Nuclear Studies (ORINS) was developed as a teaching and research facility in the Special Training Division. This facility is available to participants enrolled in various courses held at ORINS, research groups associated with the 41 universities that make up the Oak Ridge Associated Universities (ORAU), and other colleges, unversities or institutions interested in this lab for teachi…
Texas A & M University Radiocarbon Dates I
The Radiocarbon Dating Laboratory of Texas A & M University was initiated as a research facility in the Oceanography and Meteorology Department. The facilities are available to graduate study programs and to other research groups associated with the University. Research was begun in June 1960, towards development of a carbon dating method utilizing liquid scintillation counting. Benzene was chosen as the counting solvent because of its high energ…
University of Texas Radiocarbon Dates I
The C 14 Dating Laboratory of the University of Texas has been working on the development of two systems of counting: gas counting with methane, and liquid scintillation counting with benzene. Lack of adequate instrumentation has retarded the work on gas counting, but the liquid scintillation work, supported in part by the Department of Chemistry, finally led to the successful development of a system in which the benzene counting solvent was synt…
Paleodietary analysis of the prehistoric population of the Canary Islands inferred from stable isotopes (carbon, nitrogen and hydrogen) in bone collagen
Paleonutritional and paleodietary survey on prehistoric humans from Las Cañadas del Teide (Tenerife, Canary Islands) based on chemical and histological analysis of bone
Low Background Liquid Scintillation Counting Using an Active Sample Holder and Pulse Discrimination Electronics
A Packard low-level liquid scintillation counting system is described which provides superior low-background beta-counting capability for 3 H and 14 C. The design is based on a novel pulse-discrimination circuit that separates background from valid scintillation pulses. Background discrimination is further enhanced by adding a plastic vial holder that acts as an anticoincidence guard. When excited by background radiation, the scintillation proper…
University of Texas Radiocarbon Dates I
The C 14 Dating Laboratory of the University of Texas has been working on the development of two systems of counting: gas counting with methane, and liquid scintillation counting with benzene. Lack of adequate instrumentation has retarded the work on gas counting, but the liquid scintillation work, supported in part by the Department of Chemistry, finally led to the successful development of a system in which the benzene counting solvent was synt…
University of Georgia Radiocarbon Dates I
The Geochronology Laboratory of the University of Georgia was established in the fall of 1969. The laboratory is housed in the basement of the Geology Building and is under the direction of the General Research Department. Radiocarbon dating facilities are the first to be developed in the laboratory. Other methods will be employed to date a wide spectrum of samples over extensive age ranges. Facilities of the laboratory are also available to coll…
Oak Ridge Institute of Nuclear Studies Radiocarbon Dates I
The Radiocarbon Dating Laboratory of the Oak Ridge Institute of Nuclear Studies (ORINS) was developed as a teaching and research facility in the Special Training Division. This facility is available to participants enrolled in various courses held at ORINS, research groups associated with the 41 universities that make up the Oak Ridge Associated Universities (ORAU), and other colleges, unversities or institutions interested in this lab for teachi…
Texas A & M University Radiocarbon Dates I
The Radiocarbon Dating Laboratory of Texas A & M University was initiated as a research facility in the Oceanography and Meteorology Department. The facilities are available to graduate study programs and to other research groups associated with the University. Research was begun in June 1960, towards development of a carbon dating method utilizing liquid scintillation counting. Benzene was chosen as the counting solvent because of its high energ…
The New 250kV Single Stage AMS System at Cais, University of Georgia
A new 250kV single stage AMS accelerator (SSAMS) was installed at the Center for Applied Isotope Studies, University of Georgia. The accelerator is intended to be used primarily for radiocarbon measurements of natural and biobased samples, while all other samples such as marine, geological, atmospheric and archaeological samples are measured on the decade-old 500kV compact tandem accelerator (CAMS). The new AMS system is equipped with a 134-catho…
University of Georgia Radiocarbon Dates V
The following list of dates is compiled from samples prepared and catalogued since publication of our last date list (R, 1975, v 17, p 99-111). The counting equipment and operating procedures are the same. Ages are quoted with a 1σ counting error which includes statistical variation of the sample count as well as for background and standard, using ad 1950 as the reference year and 95% NBS oxalic acid for 14 C dating as the standard. The half-life…
University of Georgia Radiocarbon Dates III
The following list of dates is of archaeologic samples submitted in 1971–2, using the counting equipment described in R, 1971, v 13, p 468. Ages are quoted with a 1σ counting error which includes statistical variation of the sample, background, and standard count. The reference year is ad 1950 and 0.95% NBS oxalic acid for 14 C dating is the standard. The half-life used is 5570 years
University of Georgia Radiocarbon Dates IV
The following list of dates is compiled from samples prepared since publication of our last date list (R, 1974, v 16, p 131–141). The counting equipment and operating procedures are the same. Ages are quoted with a 1 σ counting error which includes statistical variation of the sample count as well as for background and standard, using ad 1950 as the reference year and 95% NBS oxalic acid for 14 C dating as the standard. The half-life value used i…
University of Georgia Radiocarbon Dates II
The following list of dates is compiled from samples prepared since publication of our last date list (R., 1971, v. 13, p. 468-474). The counting equipment and operating procedures are the same. Ages are quoted with a l σ counting error which includes statistical variation of the sample count as well as for the background and standard, using a.d. 1950 as the reference year and 0.95% NBS oxalic acid for C 14 dating as the standard. The half-life v…
University of Texas Radiocarbon Dates I
The C 14 Dating Laboratory of the University of Texas has been working on the development of two systems of counting: gas counting with methane, and liquid scintillation counting with benzene. Lack of adequate instrumentation has retarded the work on gas counting, but the liquid scintillation work, supported in part by the Department of Chemistry, finally led to the successful development of a system in which the benzene counting solvent was synt…
Texas A & M University Radiocarbon Dates I
The Radiocarbon Dating Laboratory of Texas A & M University was initiated as a research facility in the Oceanography and Meteorology Department. The facilities are available to graduate study programs and to other research groups associated with the University. Research was begun in June 1960, towards development of a carbon dating method utilizing liquid scintillation counting. Benzene was chosen as the counting solvent because of its high energ…
Oak Ridge Institute of Nuclear Studies Radiocarbon Dates I
The Radiocarbon Dating Laboratory of the Oak Ridge Institute of Nuclear Studies (ORINS) was developed as a teaching and research facility in the Special Training Division. This facility is available to participants enrolled in various courses held at ORINS, research groups associated with the 41 universities that make up the Oak Ridge Associated Universities (ORAU), and other colleges, unversities or institutions interested in this lab for teachi…
Oak Ridge Associated Universities Radiocarbon Dates II
The Radiocarbon Dating Laboratories of the Oak Ridge Associated Universities (ORAU) has previously published radiocarbon dates under the Oak Ridge Institute of Nuclear Studies (ORINS) name. ORINS has recently changed its name to ORAU and its laboratories and programs have accordingly assumed this new name. The ORINS prefix, which previously designated the published radiocarbon dates of this laboratory, will be continued to minimize confusion in t…
University of Georgia Radiocarbon Dates I
The Geochronology Laboratory of the University of Georgia was established in the fall of 1969. The laboratory is housed in the basement of the Geology Building and is under the direction of the General Research Department. Radiocarbon dating facilities are the first to be developed in the laboratory. Other methods will be employed to date a wide spectrum of samples over extensive age ranges. Facilities of the laboratory are also available to coll…
University of Georgia Radiocarbon Dates II
The following list of dates is compiled from samples prepared since publication of our last date list (R., 1971, v. 13, p. 468-474). The counting equipment and operating procedures are the same. Ages are quoted with a l σ counting error which includes statistical variation of the sample count as well as for the background and standard, using a.d. 1950 as the reference year and 0.95% NBS oxalic acid for C 14 dating as the standard. The half-life v…
University of Georgia Radiocarbon Dates III
The following list of dates is of archaeologic samples submitted in 1971–2, using the counting equipment described in R, 1971, v 13, p 468. Ages are quoted with a 1σ counting error which includes statistical variation of the sample, background, and standard count. The reference year is ad 1950 and 0.95% NBS oxalic acid for 14 C dating is the standard. The half-life used is 5570 years
University of Georgia Radiocarbon Dates IV
The following list of dates is compiled from samples prepared since publication of our last date list (R, 1974, v 16, p 131–141). The counting equipment and operating procedures are the same. Ages are quoted with a 1 σ counting error which includes statistical variation of the sample count as well as for background and standard, using ad 1950 as the reference year and 95% NBS oxalic acid for 14 C dating as the standard. The half-life value used i…
University of Georgia Radiocarbon Dates V
The following list of dates is compiled from samples prepared and catalogued since publication of our last date list (R, 1975, v 17, p 99-111). The counting equipment and operating procedures are the same. Ages are quoted with a 1σ counting error which includes statistical variation of the sample count as well as for background and standard, using ad 1950 as the reference year and 95% NBS oxalic acid for 14 C dating as the standard. The half-life…
University of Georgia Radiocarbon Dates VI
The Geochronology Laboratory has recently changed its name to the Center for Applied Isotope Studies to reflect its steady and diversified expansion since its conception in 1969. Initially the laboratory was set up to offer age dating services to personnel at the University of Georgia. Subsequently, the laboratory expanded its activities so as to enable it to participate in studies of an applied and basic research nature
Radiocarbon dating of Danube Delta Deposits
The Holocene history of the Danube Delta has been studied using 14 C analyses of faunal material. The principal phases of development include: (1) initial Letea Caroarman spit, 11,700–9800 yr B.P. in its central part, 8800-5500 yr B.P. in its southern part; (2) Sf. Gheorghe I Delta, 8900-7200 yr B.P.; (3) Sulina Delta, 7200-2000 yr B.P., and (4) Sf. Gheorghe II Delta-Chilia Delta 2000 yr B.P.-present. Other smaller-scale features have also been d…
University of Georgia Radiocarbon Dates VII
Radiocarbon dates reported in this date list are totally derived from a cooperative effort between the Romanian Institute of Geology and Geophysics and the Center for Applied Isotope Studies (CAIS). The project was carried out between 1972 through 1978. The purpose of the study was to add to the knowledge of the various stages of the Holocene development of the Danube and Black Sea (Ghenea et al , 1971; Panin, 1976)
Low Background Liquid Scintillation Counting Using an Active Sample Holder and Pulse Discrimination Electronics
A Packard low-level liquid scintillation counting system is described which provides superior low-background beta-counting capability for 3 H and 14 C. The design is based on a novel pulse-discrimination circuit that separates background from valid scintillation pulses. Background discrimination is further enhanced by adding a plastic vial holder that acts as an anticoincidence guard. When excited by background radiation, the scintillation proper…
Status of the AMS facility at the University of Georgia
Paleodietary analysis of the prehistoric population of the Canary Islands inferred from stable isotopes (carbon, nitrogen and hydrogen) in bone collagen
Paleonutritional and paleodietary survey on prehistoric humans from Las Cañadas del Teide (Tenerife, Canary Islands) based on chemical and histological analysis of bone
The New 250kV Single Stage AMS System at Cais, University of Georgia
A new 250kV single stage AMS accelerator (SSAMS) was installed at the Center for Applied Isotope Studies, University of Georgia. The accelerator is intended to be used primarily for radiocarbon measurements of natural and biobased samples, while all other samples such as marine, geological, atmospheric and archaeological samples are measured on the decade-old 500kV compact tandem accelerator (CAMS). The new AMS system is equipped with a 134-catho…
Archaeology (14 obras) · Radiocarbon dating (13 obras) · Archaeology and ancient environmental studies (11 obras) · Chemistry (11 obras) · Geography (10 obras) · Geology (10 obras) · Physics (9 obras) · Absolute dating (8 obras) · Isotope Analysis in Ecology (7 obras) · Nuclear physics (7 obras)