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E-mail
market@nutech17.com
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Phone
18019425599
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Address
Room 504-505, No. 26, Lane 99, Chunguang Road, Minhang District, Shanghai
Shanghai Nayou Instrument Co., Ltd
market@nutech17.com
18019425599
Room 504-505, No. 26, Lane 99, Chunguang Road, Minhang District, Shanghai
ORTEC's products are widely used in academic teaching laboratories across various disciplines, including nuclear engineering and technology, physics, chemistry, biology, and radiation medicine. Specifically, ORTEC can provide a complete set of pre written experiments, including tutorials, experimental setup instructions, methods, and student exercises.
AN34 Teaching Experiment
The ORTEC AN34 laboratory manual provides numerous pre written teaching experiments for undergraduate nuclear science laboratories.
Provide two versions of the experiment. The third version of the experiment is based on the use of the classic NIM module. The newly developed fourth edition experiment combines classic NIM with new products, including integrated and digital electronic products. The new "EASY-NIM" product suite has been widely used in AN34 4th edition.
Experimental equipment
The extensive ORTEC nuclear instrument series related to radiation detection and spectral measurement includes radiation detectors, modules for pulse counting and rapid time measurement (NIM), signal processing modules, as well as modules and digital electronic devices for general multi-channel analysis.
This modular design makes teaching experimental instruments economical, efficient, and reconfigurable. For example, several experiments in the AN34 experimental manual can be completed on basic equipment with little or no additional equipment required: simply reconfigure your existing equipment!
Partnership and Support
ORTEC expands its support by establishing partnerships with universities and other educational institutions to develop and advance pre written new experiments.
If you have developed teaching experiments using ORTEC products, we are honored to include them on this website for others to use. We appreciate the contributions made by various institutions to the experimental writing, and therefore attach the website links of the participating departments.
| experiment 1 |
Introduction to Electronic Signal Analysis in Nuclear Radiation Measurement | |
| experiment 2 |
Geiger Count | |
| experiment 3 |
useNaI(Tl)Measurement of gamma ray energy spectrum | |
| experiment 4 |
Measurement of alpha energy spectrum of silicon charged particle detector | |
| experiment 5 |
Energy loss of heavily charged particles (α) | |
| experiment 6 |
β - energy spectrum measurement | |
| experiment 7 |
High resolution gamma ray spectroscopy measurement | |
| experiment 9 |
Time in line with technology and activity measurement | |
| experiment 10 |
Compton scattering | |
| experiment 11 |
Proportional counter and low-energyXX-ray measurement | |
| experiment 13 | γ-Gamma coincidence and angle correlation | |
| experiment 14 | Lifespan and compliance of nuclides | |
| experiment 15 | Alpha Rutherford scattering of thin gold foil and other optional metal foils | |
|
experiment 19 | 60CoThe gamma ray decay scheme and angle correlation | |
| experiment 20 | Using α andXRadiation compliance experimental research244CmThe decay scheme | |
| experiment 24 | Measurement of Health Physics | |
| experiment 25 | Flight time spectrum measurement | |
| experiment 26 | 252CfMeasurement of energy loss from fission fragments | |
| experiment 27 | Measurement of positron annihilation lifetime spectrum |
The third version of the experiment is based on the use of the NIM module, while the fourth version uses updated products, integrated and commonly used digital electronic products for experimentation. Our brand new 'EASY-NIM' product is widely used in AN34 4th edition.
Suggest including references in these experiments (located under the "Library" link on the left).
If you need assistance or need to purchase equipment suitable for any specific experiment, please contact the factory.
The radioactive source for ORTEC AN34 experiment can be obtained from suppliers around the world.
Radioactive sources should be ordered directly from local suppliers or their local agents in the country/region where the final source is used. This is because the local agent is familiar with and able to assist in meeting the licensing requirements of the end use country/region. ORTEC has reached an agreement with the two suppliers mentioned in the source supplier list:
The following table provides the supplier code and vendor code for each required source by experiment number. In each case, the corresponding supplier should be contacted first to obtain their local agent, and then the end user can obtain the emission source from there according to local licensing regulations. If necessary, ORTEC is happy to assist with this process, but it is recommended to contact the source supplier directly.
Download the form in PDF format.
| supplier | model | Supplier Code | description | EXPT # |
| ST | CO-60S | Co60S1 | 1 µCi Co-60source | 2, IV-2 |
| ST | ISO (CDRB1385) | ISO | CDRB1385Isotope generator,10 µCi Cs-137/Ba-137 | 2, IV-2 |
| ST | RSS2 | RSS2 | Distinguish time settings Separate sourcesTl-204 5 µCi 2ea | 2, IV-3 |
| ST | GF-057-M-20 | Co57S20 | 20 µCi Co-57source | 3, IV-3 |
| E+Z | GF-057-M-20 | GF-057-M | 20 MCi Co-57Source (activity must be specified on the purchase order) | 3, IV-3 |
| ST | GF-137-M-5 | Cs137S5 | 5 µCi Cs-137source | 3, IV-3 |
| ST | RSS8 | RSS8 | A set of eight gamma sources used for scintillation spectrum determination:Ba-133TheCd-109TheCo-57TheCo-60TheCs-137TheMn-54TheNa-22And an 'unknown' (mixed)Cs/Zn)Source. | 3, IV-3 |
| ST | ZN65S | ZN65S | 1 µCi Zn-65source | 3, IV-3 |
| E+Z | AF200 | AF200 | A set of alpha sources: 0.1MCiof241AmThe0.01 MCiof228Thand0.01 MCiof230Th | 4, IV-4 |
| E+Z | AF-244-A2-0.1 | AF-244-A2-0.1 | 0.1 µCi Cm-244source | 4, IV-4 |
| E+Z | AF-210-A | AF-210-A | 1 MCi Po-210Source (activity must be specified on the purchase order) | 5 |
| E+Z | BF-113-A-1 | BF-113-A | 1 µCi SN-113Beta source (activity must be specified on the purchase order) | 6 |
| E+Z | BF-137-A-0.1 | BF-137-A | 0.1 MCi Cs-137Beta source (activity must be specified on the purchase order) | 6 |
| E+Z | BF-204-A-0.1 | BF-204-A | 0.1 µCi Tl-204Beta source (activity must be specified on the purchase order) | 6 |
| E+Z | GF-057-M-20 | GF-057-M | 20 MCi Co-57Source (activity must be specified on the purchase order) | 7, IV-7 |
| E+Z | GF-060-M-10 | GF-060-M | 10 MCi Co-60Source (activity must be specified on the purchase order) | 7, IV-7 |
| E+Z | GF-137-M-20 | GF-137-M | 20 MCi Cs-137Source (activity must be specified on the purchase order) | 7, IV-7 |
| E+Z | GF-228-D-10 | GF-228-D | 10 MCi Th-228Source (activity must be specified on the purchase order) | 7, IV-7 |
| E+Z | POSK-22-10 | POSK-22 | 10 MCi Na-22Source (activity must be specified on the purchase order) | 7, IV-7 |
| E+Z | GF-055-M-10 | GF-055-M | 10 MCi Fe-55Source (activity must be specified on the purchase order) | 8 |
| ST | GF-057-M-20 | Co57S20 | 20 µCi Co-57source | 8 |
| E+Z | GF-057-M-20 | GF-057-M | 20 MCi Co-57Source (activity must be specified on the purchase order) | 8 |
| E+Z | GF-109-M-10 | GF-109-M | 10 µCi Cd-109source | 8 |
| E+Z | GF-137-M-20 | GF-137-M | 20 µCi Cs-137source | 8 |
| E+Z | GF-241-M-10 | GF-241 | 10 µCi Am-241source | 8 |
| E+Z | BF-060-5 | BF-060-5 | 5 µCi Co-60β source | 9 |
| ST | CS-137S1 | Cs137S1 | 1 µCi Cs-137source | 10 |
| ST | CS173-5M | CS730000005m | 5 milliCi Cs-137source | 10 |
| ST | RSS8 | RSS8 | A set of eight gamma sources used for scintillation spectrum determination:Ba-133TheCd-109TheCo-57TheCo-60TheCs-137TheMn-54TheNa-22And an 'unknown' (mixed)Cs/Zn)Source. | 10 |
| ST | ZN65S | ZN65S | 1 µCi Zn-65source | 10 |
| E+Z | GF-055-M-10 | GF-055-M | 10 MCi Fe-55Source (activity must be specified on the purchase order) | 11 |
| E+Z | GF-057-M-20 | GF-057-M | 20 MCi Co-57Source (activity must be specified on the purchase order) | 11 |
| E+Z | GF-109-M-10 | GF-109-M | 10 MCi Cd-109Source (activity must be specified on the purchase order) | 11 |
| ST | GF-137-M-5 | CS137S5 | 5 µCi Cs-137source | 11 |
| E+Z | GF-241-M-10 | GF-241-M | 10 MCi Am-241Source (activity must be specified on the purchase order) | 11 |
| ST | ZN65S | ZN65S | 1 µCi Zn-65source | 11 |
| E+Z | GF-022D-50 | GF-022-D | 50 MCi Na-22Source (activity must be specified on the purchase order) | 13 |
| ST | GF-057-M-20 | Co57S20 | 20 µCi Co-57source | 14 |
| E+Z | GF-057-M-20 | GF-057-M | 20 MCi Co-57Source (activity must be specified on the purchase order) | 14 |
| ST | CO-60S1 | C060S1 | 1 µCi Co-60source | 19 |
| E+Z | GF-060-D-100 | GF-060-D | 100 MCi Co-60Source (activity must be specified on the purchase order) | 19 |
| E+Z | AF-244-PM-0.1 | AF-244-A2 | 0.1 MCi Cm-244Source thin window (activity must be specified on the purchase order) | 20 |
| ST | CS-137S1 | Cs137S1 | 1 µCi Cs-137source | 20 |
| ST | GF-057-M-5 | Co57S5 | 5 µCi Co-57source | 20 |
| ST | CS-137S1 | Cs137S1 | 1 µCi Cs-137source | 22 |
| E+Z | BF-204-A-0.1 | BF-204-A | 0.1 µCi Tl-204Beta source (activity must be specified on the purchase order) | 24 |
| E+Z | GF-137-M-25 | GF-137-M | 25 MCi Cs-137Source (activity must be specified on the purchase order) | 24 |
| E+Z | GF-022D-50 | GF-022-D | 50 MCi Na-22Source (activity must be specified on the purchase order) | 25 |
| ST | GF-060-M-10 | GF-060-M | 10 MCi Co-60Source (activity must be specified on the purchase order) | 27 |
| E+Z | POSK-22-10 | POSK-22 | 10 MCi Na-22Source (activity must be specified on the purchase order) | 27 |
| ST | CD-109S1 | Cd109S1 | 1microCi Cd-109source | 3, IV-3 |
| ST | CO-57S1 | Co57S1 | 1 µCi Co-57source | 3, IV-3 |
| E+Z | AM1A2100U | AM1A2100U | 100 µCi Am-241source | |
| ST | FE-55LDS100 | Fe55S100 | 100 µCi Fe-55source | |
| ST | FE55LMW10 | Fe55S10 | 10 µCi Fe-55source | |
| source | ||||
| ST | RSS2 | RSS2 | Distinguish time settings-Source of division | |
| ST | RSS3 | RSS3 | a set3Solid state source:Po-210TheSr-90andCo-60 | |
| ST | RSS3EXP | RSS3EU | a set3A solid-state source:Po-210.0.1 µCI;Sr-90,0.1 µCi & Co-60, 0.5 µCi | |
| ST | RSS5 | RSS5 | a set5Source:Po-210TheTI-204TheC0-60TheCs-137 | |
| ST | RSS5-EXP | RSS5-EU | NRC/IAEA/EUExemption source combination,alphaPo-210@0.1 µCiand βSr-90@0.1 µCi & TI-204@0.25 µCi、 γCo-60@1.0 µCi & Cs-137@0.25 µCi | |
| ST | RSS8 | RSS8 | A set of eight gamma sourcesF/Scintillation spectrum measurement | 3, IV-3 |
| ST | RSS8EXP | RSS8EU | NRC/IAEA/EURevised version of exemption source combination1,Bal 33TheCd 109TheCo57TheCo60TheMn54TheNa22TheZn65@1.0MCiandCs137@0.25MCi | 3, IV-3 |
| ST | RSS8UN | RSS8UN | NRC/IAEA/EURevised version of exemption source combination1,Bal 33TheCd 109TheCo57TheCo60TheMn54TheNa22TheZn65@1.0MCiandCs137@0.1 µCi | 3, IV-3 |
| E+Z | BF-200 | BF-200 | A set of beta sources | |