Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

IRRADIATION SPECIFICATIONS

View through CrossRef
Radiation technologies using ionising radiation and radionuclides are now widely used in all areas of human activity. These include applications in medicine, industry, nuclear energy, and science. Exposure to ionising radiation therefore affects radiation workers employed at these sites, a large group of people who are in the vicinity of the sites in the course of their work, and people who live and work in the vicinity of the sites. However, the positive properties of ionising radiation and radionuclides that we use in practical applications can be accompanied by negative effects of ionising radiation from which we must protect ourselves with well-developed and effective radiation protection. However, the negative effects of ionising radiation, which can occur with uncontrolled exposure, are quite different from other pollutants that affect humans, such as noise, dust, light or heat fields, toxic substances, etc. varies considerably. For example, by the fact that humans have no sense to alert them that they are in a radiation field. This is a fact that greatly affects all radiation activities and all contact with ionizing radiation. This paper deals with the differences and specifics of irradiation. He gradually discusses them, looking for their mutual connections and links. It discusses their significance and seriousness. It also discusses their impact on radiation safety and the provision of effective and reliable radiation protection for radiation workers and the public. In view of the widespread use of radiation technologies, good knowledge and awareness of ionising radiation can contribute to working responsibly in radiation workplaces and to minimising the emergence of various rumours and untruths among the public.
Title: IRRADIATION SPECIFICATIONS
Description:
Radiation technologies using ionising radiation and radionuclides are now widely used in all areas of human activity.
These include applications in medicine, industry, nuclear energy, and science.
Exposure to ionising radiation therefore affects radiation workers employed at these sites, a large group of people who are in the vicinity of the sites in the course of their work, and people who live and work in the vicinity of the sites.
However, the positive properties of ionising radiation and radionuclides that we use in practical applications can be accompanied by negative effects of ionising radiation from which we must protect ourselves with well-developed and effective radiation protection.
However, the negative effects of ionising radiation, which can occur with uncontrolled exposure, are quite different from other pollutants that affect humans, such as noise, dust, light or heat fields, toxic substances, etc.
varies considerably.
For example, by the fact that humans have no sense to alert them that they are in a radiation field.
This is a fact that greatly affects all radiation activities and all contact with ionizing radiation.
This paper deals with the differences and specifics of irradiation.
He gradually discusses them, looking for their mutual connections and links.
It discusses their significance and seriousness.
It also discusses their impact on radiation safety and the provision of effective and reliable radiation protection for radiation workers and the public.
In view of the widespread use of radiation technologies, good knowledge and awareness of ionising radiation can contribute to working responsibly in radiation workplaces and to minimising the emergence of various rumours and untruths among the public.

Related Results

Post-Irradiation Fracture Toughness Characterization of Generation II FeCrAl Alloys
Post-Irradiation Fracture Toughness Characterization of Generation II FeCrAl Alloys
Abstract FeCrAl alloys are promising candidate materials for the accident tolerant fuel (ATF) cladding application due to their exceptional resistance to oxidation i...
Réponse du cerveau sain, des cellules souches neuronales et du glioblastome à une nouvelle technique de radiothérapie Flash
Réponse du cerveau sain, des cellules souches neuronales et du glioblastome à une nouvelle technique de radiothérapie Flash
De nos jours, plus de 50% des patients porteurs de tumeur bénéficient d’un traitement de radiothérapie. Malgré de récentes avancées technologiques augmentant de la précision des tr...
Irradiation Induced Microstructure Evolution in Nanostructured Materials: A Review
Irradiation Induced Microstructure Evolution in Nanostructured Materials: A Review
Nanostructured (NS) materials may have different irradiation resistance from their coarse-grained (CG) counterparts. In this review, we focus on the effect of grain boundaries (GBs...
A metamodel for design review derived from design specification templates
A metamodel for design review derived from design specification templates
In order to improve the quality of software, we review specifications refined from the specifications of the previous design process. Nevertheless, errors and defects of specificat...
Quality Assurance for Iraqi Bottled Water Specifications
Quality Assurance for Iraqi Bottled Water Specifications
In this research the specifications of Iraqi drinking bottled water brands are investigated throughout the comparison between local brands, Saudi Arabia and the World Health Organi...
Effect of -ray irradiation on performance of LiNbO3-based piezoelectric vibration sensors
Effect of -ray irradiation on performance of LiNbO3-based piezoelectric vibration sensors
Abstract LiNbO3 (LN)-based micro-electro-mechanical systems (MEMS) vibration sensors exhibit giant perspectives in extreme environments, where a great amount of irra...

Back to Top