Gamma Radiation can be used in several ways in the medical industry and there have been many significant advances in this area. They can be used for curing cancers and other illnesses. They are used in a beam and aimed at the cancerous cells in the body. They kill the cells, but often, the gamma radiation will kill living cells, leading to permanent damage and could even prove fatal.
Tiny beta capsules can be used to treat cancer.
The capsules are injected around the cancer and the beta radiation kills the cancer cells. Radiation is particularly damaging to cells that are in the process of dividing. Cancer cells divide much more often than healthy cells. This means cancer cells tend to be killed while most of the healthy cells are unharmed.
Curing cancer and sterilise medical equipment
Some drugs do in fact have medical benefits.
Nobody. The English borrowed the Latin alphabet in the 8th or 9th Century, and then modified it to fit the sounds of English.___English uses the Latin alphabet, which in turn developed from the Greek alphabet. That in turn developed from various alphabets in use in the Mediterranean region ... Nobody invented the alphabet.Nobody. It was invented. Alpha and beta are A and b in ancient Greek. ___ English uses the Roman alphabet, which in turn developed from the Greek alphabet. That in turn developed from various alphabets in use in the Mediterranean region ... Nobody invented the alphabet.
Conventional bombs use conventional explosives or incendiary materials, e.g. TNT, RDX, C-4, Semtex, Magnesium, Napalm. They cause localised damage with fairly consistent and predictable effects. They are usually cheap and leave little ongoing damage once detonated. Nuclear bombs use the power of either nuclear fission or nuclear fusion or both. The result is enormous amounts of energy released in microseconds, with wholesale destruction over a large area, and leave radioactive fallout all around.
It serves as a foundation for other similar oaths and laws that define medical practice. Such oaths are takes today by students entering the medical profession
go onto Google images and type in 'radiation diagram' look at second image with a cartoon sun in it- for that would be your answer
A kidney scanner uses gamma radiation because it has higher penetration ability, allowing it to reach and image deep structures inside the body like the kidneys. Beta and alpha radiation have lower penetration abilities and would not be suitable for this purpose. Additionally, gamma radiation is less likely to be absorbed by surrounding tissues, providing clearer images of the kidneys.
Beta rays are commonly used in medical imaging and cancer treatment, as well as in industrial applications for thickness gauging and quality control. They can also be used in radiation therapy to target and destroy cancer cells.
Technetium-99 is used as standard source for beta radiation.
Beta particles are used in a variety of everyday applications such as smoke detectors, thickness gauges for materials, and industrial process monitoring. They can also be used in certain medical treatments like radiation therapy for cancer.
To shrink cancerous tumors
Beta radiation can be used in medicine and in other areas of science to learn more about the structures and processes in living organisms, and also in nuclear medicine to treat some medical conditions.
to detect radiation, a device such as Geiger- Muller tube is used
Radiation can travel through; solids, liquids, gases and it can also pass through a vacuem (where particles are not present). This is because radiation uses waves to emit not particles.
Curing cancer and sterilise medical equipment
Beta particles are not as penetrative as gama rays and can be stopped by the skin. Another reason is because of the high risk and danger involve if one is to expose the internal body to the beta radiation. This is due to the high ionizing effect of beta radiation that can easily mutate a DNA strand making it difficult to control it for uses in the body.
Applications of promethium: - beta radiation source in instruments used to measure thickness of coatings by retrodiffusion of beta radiations - luminous paints - atomic batteries