Container for the radioactive isotopes Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/container-for-the-radioactive-isotopes-image63667687.html
RFDKG8NY–Container for the radioactive isotopes
Specialist containers with warning sticker and engraving containing radioactive isotopes Promethium 147 and Thallium 204, Melbourne 2015 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-specialist-containers-with-warning-sticker-and-engraving-containing-135984888.html
RFHW6J34–Specialist containers with warning sticker and engraving containing radioactive isotopes Promethium 147 and Thallium 204, Melbourne 2015
Uranium-238 (238U or U-238) is the most common isotope of uranium found in nature. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/uranium-238-238u-or-u-238-is-the-most-common-isotope-of-uranium-found-in-nature-image415995913.html
RM2F4P70W–Uranium-238 (238U or U-238) is the most common isotope of uranium found in nature.
Alpha decay. α-decay is a type of radioactive decay in which an atomic nucleus emits an alpha particle (helium nucleus) and forms a new element Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/alpha-decay-decay-is-a-type-of-radioactive-decay-in-which-an-atomic-nucleus-emits-an-alpha-particle-helium-nucleus-and-forms-a-new-element-image389827679.html
RF2DJ6553–Alpha decay. α-decay is a type of radioactive decay in which an atomic nucleus emits an alpha particle (helium nucleus) and forms a new element
Scientist studying the radioactive isotopes of a chemical that is being processed at the Battelle Memorial Institute, Columbus, Ohio, USA 1962 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/scientist-studying-the-radioactive-isotopes-of-a-chemical-that-is-being-processed-at-the-battelle-memorial-institute-columbus-ohio-usa-1962-image451503858.html
RM2H6FNNP–Scientist studying the radioactive isotopes of a chemical that is being processed at the Battelle Memorial Institute, Columbus, Ohio, USA 1962
Luminous paint glowing on an old watch with a three-second exposure Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-luminous-paint-glowing-on-an-old-watch-with-a-three-second-exposure-38513504.html
RMC6JCA8–Luminous paint glowing on an old watch with a three-second exposure
Wladyslaw Skłodowski and his daughters (from left) Maria, Bronisława, and Helena. Maria became Marie Curie (1867-1934), a Polish-French physicist and chemist and multiple Nobel laureate. Her achievements include a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Photographed in 1890. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/wladyslaw-skodowski-and-his-daughters-from-left-maria-bronisawa-and-helena-maria-became-marie-curie-1867-1934-a-polish-french-physicist-and-chemist-and-multiple-nobel-laureate-her-achievements-include-a-theory-of-radioactivity-a-term-that-she-coined-techniques-for-isolating-radioactive-isotopes-and-the-discovery-of-two-elements-polonium-and-radium-photographed-in-1890-image458813916.html
RM2HJCNR8–Wladyslaw Sk≈Çodowski and his daughters (from left) Maria, Bronis≈Çawa, and Helena. Maria became Marie Curie (1867-1934), a Polish-French physicist and chemist and multiple Nobel laureate. Her achievements include a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Photographed in 1890.
Tech. Sgt. Darryl Adams, 341st Bioenvironmental Engineering Squadron NCO in-charge, scans an ammo can for radiation during a joint-training event March 8, 2022, at the emergency management warehouse on Malmstrom Air Force Base, Mont. Adams is using a SAM-940 radiation device, which quantifies and identifies radioactive isotopes. Outside agencies, such as the FBI, rely on bioenvironmental personnel to detect dangerous chemicals on and around the installation during emergency situations. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/tech-sgt-darryl-adams-341st-bioenvironmental-engineering-squadron-nco-in-charge-scans-an-ammo-can-for-radiation-during-a-joint-training-event-march-8-2022-at-the-emergency-management-warehouse-on-malmstrom-air-force-base-mont-adams-is-using-a-sam-940-radiation-device-which-quantifies-and-identifies-radioactive-isotopes-outside-agencies-such-as-the-fbi-rely-on-bioenvironmental-personnel-to-detect-dangerous-chemicals-on-and-around-the-installation-during-emergency-situations-image502499256.html
RM2M5EPX0–Tech. Sgt. Darryl Adams, 341st Bioenvironmental Engineering Squadron NCO in-charge, scans an ammo can for radiation during a joint-training event March 8, 2022, at the emergency management warehouse on Malmstrom Air Force Base, Mont. Adams is using a SAM-940 radiation device, which quantifies and identifies radioactive isotopes. Outside agencies, such as the FBI, rely on bioenvironmental personnel to detect dangerous chemicals on and around the installation during emergency situations.
3d rendering of radioactive intravenous drug using a needle and syringe to inject a drug Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-radioactive-intravenous-drug-using-a-needle-and-syringe-to-inject-a-drug-image598938779.html
RF2WPC0EK–3d rendering of radioactive intravenous drug using a needle and syringe to inject a drug
Home Smoke Detector / Alarm - Containing Radioactive Element (Isotope) Americium 241 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-home-smoke-detector-alarm-containing-radioactive-element-isotope-americium-35421537.html
Air Force Staff Sgt. Jennifer Evans, survey team chief with the Arkansas National Guard's 61st Civil Support Team, monitors crowds entering Churchill Downs with an identiFINDER during the 141st Kentucky Derby in Louisville, Ky., May 2, 2015. The identiFINDER was used by members of the Joint Emergency Services Unit to detect and identify potentially hazardous radioactive isotopes. (Photo by: Staff Sgt. David Bolton, Public Affairs Specialist, 133rd Mobile Public Affairs Detachment, Kentucky Army National Guard) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-air-force-staff-sgt-jennifer-evans-survey-team-chief-with-the-arkansas-171904710.html
RMKYJX5X–Air Force Staff Sgt. Jennifer Evans, survey team chief with the Arkansas National Guard's 61st Civil Support Team, monitors crowds entering Churchill Downs with an identiFINDER during the 141st Kentucky Derby in Louisville, Ky., May 2, 2015. The identiFINDER was used by members of the Joint Emergency Services Unit to detect and identify potentially hazardous radioactive isotopes. (Photo by: Staff Sgt. David Bolton, Public Affairs Specialist, 133rd Mobile Public Affairs Detachment, Kentucky Army National Guard)
Members of the California National Guard's Los Alamitos-based 9th Civil Support Team survey the wreckage of a simulated plane crash at Universal Studios Hollywood April 8. The survey team found dangerous radiation levels at the site, where a health care company had used radioactive isotopes to make products used in medical tests. 9th CST brings expertise, sense of purpose to disaster response, Universal Studios lends realistic setting to jet crash, radiation leak drill 150408-A-BH123-002 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-members-of-the-california-national-guards-los-alamitos-based-9th-civil-129568639.html
RMHEPA3B–Members of the California National Guard's Los Alamitos-based 9th Civil Support Team survey the wreckage of a simulated plane crash at Universal Studios Hollywood April 8. The survey team found dangerous radiation levels at the site, where a health care company had used radioactive isotopes to make products used in medical tests. 9th CST brings expertise, sense of purpose to disaster response, Universal Studios lends realistic setting to jet crash, radiation leak drill 150408-A-BH123-002
Uranium-238 (238U or U-238) is the most common isotope of uranium found in nature. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/uranium-238-238u-or-u-238-is-the-most-common-isotope-of-uranium-found-in-nature-image415995995.html
RM2F4P73R–Uranium-238 (238U or U-238) is the most common isotope of uranium found in nature.
radioactivity and radiation rays. Close-up of radioactive atom, and particle. unstable nucleus with the release of a fast electron beta particle Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/radioactivity-and-radiation-rays-close-up-of-radioactive-atom-and-particle-unstable-nucleus-with-the-release-of-a-fast-electron-beta-particle-image484006569.html
RF2K3CB8W–radioactivity and radiation rays. Close-up of radioactive atom, and particle. unstable nucleus with the release of a fast electron beta particle
Otto Hahn and Lise Meitner. The Austrian-Swedish physicist, Lise Meitner (b. Elise Meitner, 1878-1968) and the German chemist, Otto Hahn (1879-1968) in the chemical laboratory of the Kaiser Wilhelm Institute for Chemistry, 1913 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/otto-hahn-and-lise-meitner-the-austrian-swedish-physicist-lise-meitner-b-elise-meitner-1878-1968-and-the-german-chemist-otto-hahn-1879-1968-in-the-chemical-laboratory-of-the-kaiser-wilhelm-institute-for-chemistry-1913-image574511956.html
RM2TAK7T4–Otto Hahn and Lise Meitner. The Austrian-Swedish physicist, Lise Meitner (b. Elise Meitner, 1878-1968) and the German chemist, Otto Hahn (1879-1968) in the chemical laboratory of the Kaiser Wilhelm Institute for Chemistry, 1913
Ionizing radiation hazard sign in the Chernobyl exclusion zone, Ukraine Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-ionizing-radiation-hazard-sign-in-the-chernobyl-exclusion-zone-ukraine-102440031.html
RFFXJF8F–Ionizing radiation hazard sign in the Chernobyl exclusion zone, Ukraine
Otto Hahn. The German chemistwho discovered nuclear fission, Otto Hahn (1879-1968) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/otto-hahn-the-german-chemistwho-discovered-nuclear-fission-otto-hahn-1879-1968-image574511958.html
RM2TAK7T6–Otto Hahn. The German chemistwho discovered nuclear fission, Otto Hahn (1879-1968)
Atomic energy stand at British Industries Fair 1949 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/atomic-energy-stand-at-british-industries-fair-1949-image501469979.html
RM2M3RX23–Atomic energy stand at British Industries Fair 1949
Equipment for production of radioactive injections at hospital Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/equipment-for-production-of-radioactive-injections-at-hospital-image63667706.html
RFDKG8PJ–Equipment for production of radioactive injections at hospital
Two specialist containers with warning sticker and engraving containing radioactive isotopes Promethium 147 and Thallium 204 in a box, Melbourne 2015 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-two-specialist-containers-with-warning-sticker-and-engraving-containing-135984890.html
RFHW6J36–Two specialist containers with warning sticker and engraving containing radioactive isotopes Promethium 147 and Thallium 204 in a box, Melbourne 2015
Emergency Radiation Team members from AEC's Hanford Works are prepared to measure high or low level radioactive contamination if it were to get out of the hundreds of users of radioactive isotopes in Washington, Oregon and Alaska, 1958. Image courtesy US Department of Energy. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-emergency-radiation-team-members-from-aecs-hanford-works-are-prepared-136530504.html
RMHX3E1C–Emergency Radiation Team members from AEC's Hanford Works are prepared to measure high or low level radioactive contamination if it were to get out of the hundreds of users of radioactive isotopes in Washington, Oregon and Alaska, 1958. Image courtesy US Department of Energy.
X-10 Graphite Reactor's was the world's second artificial nuclear reactor. Photo shows the x-10's concrete face at Oak Ridge National Laboratory. After WW2, the graphite reactor became the first facility in the world to provide radioactive isotopes for peacetime use. It produced the isotopes iodine-131, phosphorus-32, and carbon-14, for scientific, medical, industrial, and agricultural uses. Graphite Reactor at X-10 was shut down in 1963, after twenty years of use. (BSLOC 2015 2 24) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-x-10-graphite-reactors-was-the-worlds-second-artificial-nuclear-reactor-87521435.html
RMF2AXDF–X-10 Graphite Reactor's was the world's second artificial nuclear reactor. Photo shows the x-10's concrete face at Oak Ridge National Laboratory. After WW2, the graphite reactor became the first facility in the world to provide radioactive isotopes for peacetime use. It produced the isotopes iodine-131, phosphorus-32, and carbon-14, for scientific, medical, industrial, and agricultural uses. Graphite Reactor at X-10 was shut down in 1963, after twenty years of use. (BSLOC 2015 2 24)
Symbol for the uranium isotopes 235-U and 238-U. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/symbol-for-the-uranium-isotopes-235-u-and-238-u-image461518377.html
RF2HPRYB5–Symbol for the uranium isotopes 235-U and 238-U.
Penetrating power of alpha, beta and gamma rays Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/penetrating-power-of-alpha-beta-and-gamma-rays-image598526068.html
RF2WNN630–Penetrating power of alpha, beta and gamma rays
Marie Curie (1867-1934) was a Polish-French physicist and chemist and multiple Nobel laureate. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Photographed by Frank Henri Jullien, 1922. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/marie-curie-1867-1934-was-a-polish-french-physicist-and-chemist-and-multiple-nobel-laureate-her-achievements-included-a-theory-of-radioactivity-a-term-that-she-coined-techniques-for-isolating-radioactive-isotopes-and-the-discovery-of-two-elements-polonium-and-radium-photographed-by-frank-henri-jullien-1922-image458814269.html
RM2HJCP7W–Marie Curie (1867-1934) was a Polish-French physicist and chemist and multiple Nobel laureate. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Photographed by Frank Henri Jullien, 1922.
Penetrating power of Alpha, Beta and Gamma ray through Paper, Aluminium, Led and Concrete. Penetration power of alpha, beta and gamma radiation. Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/penetrating-power-of-alpha-beta-and-gamma-ray-through-paper-aluminium-led-and-concrete-penetration-power-of-alpha-beta-and-gamma-radiation-image401419386.html
RF2E926EJ–Penetrating power of Alpha, Beta and Gamma ray through Paper, Aluminium, Led and Concrete. Penetration power of alpha, beta and gamma radiation.
3d rendering of radioactive intravenous drug using a needle and syringe to inject a drug Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-radioactive-intravenous-drug-using-a-needle-and-syringe-to-inject-a-drug-image598938776.html
RF2WPC0EG–3d rendering of radioactive intravenous drug using a needle and syringe to inject a drug
Home Smoke Detector / Alarm - Containing Radioactive Element (Isotope) Americium 241 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-home-smoke-detector-alarm-containing-radioactive-element-isotope-americium-35421536.html
3d rendering of Radiopharmaceuticals, these are radioactive medications or radioisotopes. These medications can be delivered orally in pill form. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-radiopharmaceuticals-these-are-radioactive-medications-or-radioisotopes-these-medications-can-be-delivered-orally-in-pill-form-image598246308.html
RF2WN8D7G–3d rendering of Radiopharmaceuticals, these are radioactive medications or radioisotopes. These medications can be delivered orally in pill form.
Members of the California National Guard's Los Alamitos-based 9th Civil Support Team survey the wreckage of a simulated plane crash at Universal Studios Hollywood April 8. The survey team found dangerous radiation levels at the site, where a health care company had used radioactive isotopes to make products used in medical tests. 9th CST brings expertise, sense of purpose to disaster response, Universal Studios lends realistic setting to jet crash, radiation leak drill 150408-A-BH123-001 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-members-of-the-california-national-guards-los-alamitos-based-9th-civil-129568640.html
RMHEPA3C–Members of the California National Guard's Los Alamitos-based 9th Civil Support Team survey the wreckage of a simulated plane crash at Universal Studios Hollywood April 8. The survey team found dangerous radiation levels at the site, where a health care company had used radioactive isotopes to make products used in medical tests. 9th CST brings expertise, sense of purpose to disaster response, Universal Studios lends realistic setting to jet crash, radiation leak drill 150408-A-BH123-001
RMC1HGE6–Potassium Iodide Pills - Treatment for Radiation Exposure (Iodine Tablets)
Nuclear fusion reaction process vector image. Illustration showing a nuclear fusion process. Nuclear energy diagram of nuclear fusion reaction. Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/nuclear-fusion-reaction-process-vector-image-illustration-showing-a-nuclear-fusion-process-nuclear-energy-diagram-of-nuclear-fusion-reaction-image419237525.html
RF2FA1WMN–Nuclear fusion reaction process vector image. Illustration showing a nuclear fusion process. Nuclear energy diagram of nuclear fusion reaction.
Yttrium is a chemical element with the symbol Y and atomic number 39. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/yttrium-is-a-chemical-element-with-the-symbol-y-and-atomic-number-39-image415993647.html
RM2F4P43Y–Yttrium is a chemical element with the symbol Y and atomic number 39.
tablets containing iodine Kaliumiodid and Natriumiodid for use in case of radioactive contamination Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/tablets-containing-iodine-kaliumiodid-and-natriumiodid-for-use-in-case-of-radioactive-contamination-image463359378.html
RF2HWRRH6–tablets containing iodine Kaliumiodid and Natriumiodid for use in case of radioactive contamination
Kupiskis, Lithuania - March 2022: Kaliumjodid tablets for use in case of nuclear accident or attack, if radioactive iodine would be released into the Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kupiskis-lithuania-march-2022-kaliumjodid-tablets-for-use-in-case-of-nuclear-accident-or-attack-if-radioactive-iodine-would-be-released-into-the-image483225808.html
RM2K24RCG–Kupiskis, Lithuania - March 2022: Kaliumjodid tablets for use in case of nuclear accident or attack, if radioactive iodine would be released into the
Hydrogen Atom and Isotopes (Tritium, Deuterium, Protium). Bohr Model. Structure of atom with one Electron, and Nucleus that Consists Of Proton And Neu Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/hydrogen-atom-and-isotopes-tritium-deuterium-protium-bohr-model-structure-of-atom-with-one-electron-and-nucleus-that-consists-of-proton-and-neu-image556208375.html
RF2R8WDCR–Hydrogen Atom and Isotopes (Tritium, Deuterium, Protium). Bohr Model. Structure of atom with one Electron, and Nucleus that Consists Of Proton And Neu
Quehanna, Pennsylvania, 1965 A Martin Company technician watches through a three foot thick window as he manipulates a tool inside a hot cell where they process radioisotopes for use in atomic generators. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/quehanna-pennsylvania-1965-a-martin-company-technician-watches-through-a-three-foot-thick-window-as-he-manipulates-a-tool-inside-a-hot-cell-where-they-process-radioisotopes-for-use-in-atomic-generators-image556298916.html
RM2R91GXC–Quehanna, Pennsylvania, 1965 A Martin Company technician watches through a three foot thick window as he manipulates a tool inside a hot cell where they process radioisotopes for use in atomic generators.
Specialist container with warning sticker and engraving containing radioactive isotope Thallium-204, Melbourne 2015 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-specialist-container-with-warning-sticker-and-engraving-containing-135984878.html
RFHW6J2P–Specialist container with warning sticker and engraving containing radioactive isotope Thallium-204, Melbourne 2015
Mar. 26, 1962 - Researchers Study Soil Composition Radioactive Isotopes Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mar-26-1962-researchers-study-soil-composition-radioactive-isotopes-image69398648.html
RME0WAK4–Mar. 26, 1962 - Researchers Study Soil Composition Radioactive Isotopes
British scientist Robert Barker, 26, claims to have built an portable atomic pile. He said the ashcan-sized apparatus could produce quality radioactive isotopes. Its dangerous radiation was reduced by the copper container and placement in a concrete block well. - (CSU 2015 6 215) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-british-scientist-robert-barker-26-claims-to-have-built-an-portable-87525260.html
RMF2B3A4–British scientist Robert Barker, 26, claims to have built an portable atomic pile. He said the ashcan-sized apparatus could produce quality radioactive isotopes. Its dangerous radiation was reduced by the copper container and placement in a concrete block well. - (CSU 2015 6 215)
Nitrogen isotopes. structure of Atom. Labeled scheme with particles (protons, neutrons and electrons). vector illustration for science, education Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/nitrogen-isotopes-structure-of-atom-labeled-scheme-with-particles-protons-neutrons-and-electrons-vector-illustration-for-science-education-image425405268.html
RF2FM2TN8–Nitrogen isotopes. structure of Atom. Labeled scheme with particles (protons, neutrons and electrons). vector illustration for science, education
Handling Radioactive isotopes. October 10, 1949. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/handling-radioactive-isotopes-october-10-1949-image463580852.html
RM2HX5X30–Handling Radioactive isotopes. October 10, 1949.
Marie Curie (1867-1934) was a Polish-French physicist and chemist. She was the first woman to win a Nobel Prize, the only woman to date to win in two fields, and the only person to win in multiple sciences. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/marie-curie-1867-1934-was-a-polish-french-physicist-and-chemist-she-was-the-first-woman-to-win-a-nobel-prize-the-only-woman-to-date-to-win-in-two-fields-and-the-only-person-to-win-in-multiple-sciences-her-achievements-included-a-theory-of-radioactivity-a-term-that-she-coined-techniques-for-isolating-radioactive-isotopes-and-the-discovery-of-two-elements-polonium-and-radium-image458813011.html
RM2HJCMJY–Marie Curie (1867-1934) was a Polish-French physicist and chemist. She was the first woman to win a Nobel Prize, the only woman to date to win in two fields, and the only person to win in multiple sciences. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium.
Gas mask seen in low key. ЧЕРНОБЫЛЬ= Chernobyl. Copy space. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/gas-mask-seen-in-low-key-=-chernobyl-copy-space-image256207772.html
RMTTR7HG–Gas mask seen in low key. ЧЕРНОБЫЛЬ= Chernobyl. Copy space.
Kupiskis, Lithuania - March 2022: Kaliumjodid tablets for use in case of nuclear accident or attack, if radioactive iodine would be released into the Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kupiskis-lithuania-march-2022-kaliumjodid-tablets-for-use-in-case-of-nuclear-accident-or-attack-if-radioactive-iodine-would-be-released-into-the-image465540443.html
RF2J1B5GB–Kupiskis, Lithuania - March 2022: Kaliumjodid tablets for use in case of nuclear accident or attack, if radioactive iodine would be released into the
X-10 Graphite Reactor's was the world's second artificial nuclear reactor. Photo shows the x-10's concrete face at Oak Ridge National Laboratory. After WW2, the graphite reactor became the first facility in the world to provide radioactive isotopes for peacetime use. It produced the isotopes iodine-131, phosphorus-32, and carbon-14, for scientific, medical, industrial, and agricultural uses. Graphite Reactor at X-10 was shut down in 1963, after twenty years of use. (BSLOC 2015 2 24) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-x-10-graphite-reactors-was-the-worlds-second-artificial-nuclear-reactor-170526815.html
RMKWC4KB–X-10 Graphite Reactor's was the world's second artificial nuclear reactor. Photo shows the x-10's concrete face at Oak Ridge National Laboratory. After WW2, the graphite reactor became the first facility in the world to provide radioactive isotopes for peacetime use. It produced the isotopes iodine-131, phosphorus-32, and carbon-14, for scientific, medical, industrial, and agricultural uses. Graphite Reactor at X-10 was shut down in 1963, after twenty years of use. (BSLOC 2015 2 24)
3d rendering of Radiopharmaceuticals, these are radioactive medications or radioisotopes. These medications can be delivered orally in pill form. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-radiopharmaceuticals-these-are-radioactive-medications-or-radioisotopes-these-medications-can-be-delivered-orally-in-pill-form-image598246302.html
RF2WN8D7A–3d rendering of Radiopharmaceuticals, these are radioactive medications or radioisotopes. These medications can be delivered orally in pill form.
Members of the California National Guard's Los Alamitos-based 9th Civil Support Team prepare to survey the wreckage of a simulated plane crash at Universal Studios Hollywood April 8. The survey team found dangerous radiation levels at the site, where a health care company had used radioactive isotopes to make products used in medical tests. 9th CST brings expertise, sense of purpose to disaster response, Universal Studios lends realistic setting to jet crash, radiation leak drill 150408-A-BH123-003 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-members-of-the-california-national-guards-los-alamitos-based-9th-civil-129568641.html
RMHEPA3D–Members of the California National Guard's Los Alamitos-based 9th Civil Support Team prepare to survey the wreckage of a simulated plane crash at Universal Studios Hollywood April 8. The survey team found dangerous radiation levels at the site, where a health care company had used radioactive isotopes to make products used in medical tests. 9th CST brings expertise, sense of purpose to disaster response, Universal Studios lends realistic setting to jet crash, radiation leak drill 150408-A-BH123-003
RMC1HGE4–Potassium Iodide Pills - Treatment for Radiation Exposure (Iodine Tablets)
Senior Airman Timothy Burnett, 51st Medical Group Aerospace Medicine Squadron bioenvironmental engineering journeyman and Airman 1st Class Benjamin Thompson, 51st Civil Engineer Squadron emergency management apprentice use equipment that allows them to identify simulated radioactive isotopes and take airborne readings to assess danger levels during an exercise at Osan Air Base, Republic of Korea, Aug 4, 2015. The scenario is part of a week-long series of intense, integrated base emergency response capability training exercises for initial and follow-on responders. Staff Sgt. Amber Grimm) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-senior-airman-timothy-burnett-51st-medical-group-aerospace-medicine-129293130.html
RMHE9PKP–Senior Airman Timothy Burnett, 51st Medical Group Aerospace Medicine Squadron bioenvironmental engineering journeyman and Airman 1st Class Benjamin Thompson, 51st Civil Engineer Squadron emergency management apprentice use equipment that allows them to identify simulated radioactive isotopes and take airborne readings to assess danger levels during an exercise at Osan Air Base, Republic of Korea, Aug 4, 2015. The scenario is part of a week-long series of intense, integrated base emergency response capability training exercises for initial and follow-on responders. Staff Sgt. Amber Grimm)
nuclear fission reaction vector image. Illustration showing a nuclear fission process. Nuclear energy diagram of nuclear fission reaction. Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/nuclear-fission-reaction-vector-image-illustration-showing-a-nuclear-fission-process-nuclear-energy-diagram-of-nuclear-fission-reaction-image419237519.html
RF2FA1WMF–nuclear fission reaction vector image. Illustration showing a nuclear fission process. Nuclear energy diagram of nuclear fission reaction.
Yttrium is a chemical element with the symbol Y and atomic number 39. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/yttrium-is-a-chemical-element-with-the-symbol-y-and-atomic-number-39-image415993635.html
RM2F4P43F–Yttrium is a chemical element with the symbol Y and atomic number 39.
Nuclear stability depends on Neutron Proton ratio of a nucleus. Nuclear reaction ie,Nuclear Fission or Nuclear Fusion reaction also depends on Neutron Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/nuclear-stability-depends-on-neutron-proton-ratio-of-a-nucleus-nuclear-reaction-ienuclear-fission-or-nuclear-fusion-reaction-also-depends-on-neutron-image419237440.html
RF2FA1WHM–Nuclear stability depends on Neutron Proton ratio of a nucleus. Nuclear reaction ie,Nuclear Fission or Nuclear Fusion reaction also depends on Neutron
tablets containing iodine Kaliumiodid and Natriumiodid for use in case of radioactive contamination Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/tablets-containing-iodine-kaliumiodid-and-natriumiodid-for-use-in-case-of-radioactive-contamination-image463359480.html
RF2HWRRMT–tablets containing iodine Kaliumiodid and Natriumiodid for use in case of radioactive contamination
Kupiskis, Lithuania - March 2022:Kaliumjodid tablets for use in case of nuclear accident or attack, if radioactive iodine would be released into the a Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kupiskis-lithuania-march-2022kaliumjodid-tablets-for-use-in-case-of-nuclear-accident-or-attack-if-radioactive-iodine-would-be-released-into-the-a-image483225771.html
RM2K24RB7–Kupiskis, Lithuania - March 2022:Kaliumjodid tablets for use in case of nuclear accident or attack, if radioactive iodine would be released into the a
Box with warning sticker and lock containing radioactive materials, Melbourne 2015 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-box-with-warning-sticker-and-lock-containing-radioactive-materials-135984859.html
RFHW6J23–Box with warning sticker and lock containing radioactive materials, Melbourne 2015
tablets containing iodine Kaliumiodid and Natriumiodid for use in case of radioactive contamination Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/tablets-containing-iodine-kaliumiodid-and-natriumiodid-for-use-in-case-of-radioactive-contamination-image463359499.html
RF2HWRRNF–tablets containing iodine Kaliumiodid and Natriumiodid for use in case of radioactive contamination
X-10 Graphite Reactor's was the world's second artificial nuclear reactor. Photo shows the x-10's concrete face at Oak Ridge National Laboratory. After WW2, the graphite reactor became the first facility in the world to provide radioactive isotopes for peacetime use. It produced the isotopes iodine-131, phosphorus-32, and carbon-14, for scientific, medical, industrial, and agricultural uses. Graphite Reactor at X-10 was shut down in 1963, after twenty years of use. (BSLOC 2015 2 24) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-x-10-graphite-reactors-was-the-worlds-second-artificial-nuclear-reactor-170525109.html
RMKWC2ED–X-10 Graphite Reactor's was the world's second artificial nuclear reactor. Photo shows the x-10's concrete face at Oak Ridge National Laboratory. After WW2, the graphite reactor became the first facility in the world to provide radioactive isotopes for peacetime use. It produced the isotopes iodine-131, phosphorus-32, and carbon-14, for scientific, medical, industrial, and agricultural uses. Graphite Reactor at X-10 was shut down in 1963, after twenty years of use. (BSLOC 2015 2 24)
Phosphorus isotopes. structure of Atom. Labeled scheme with particles (protons, neutrons and electrons). vector illustration for science, education Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/phosphorus-isotopes-structure-of-atom-labeled-scheme-with-particles-protons-neutrons-and-electrons-vector-illustration-for-science-education-image425405336.html
RF2FM2TRM–Phosphorus isotopes. structure of Atom. Labeled scheme with particles (protons, neutrons and electrons). vector illustration for science, education
Dramatic scientific background - nuclear fallout, hazardous accident with radioactive isotopes in air, black apocalyptic rain, ecological catastrophe Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/dramatic-scientific-background-nuclear-fallout-hazardous-accident-with-radioactive-isotopes-in-air-black-apocalyptic-rain-ecological-catastrophe-image354860153.html
RF2BH97MW–Dramatic scientific background - nuclear fallout, hazardous accident with radioactive isotopes in air, black apocalyptic rain, ecological catastrophe
Marie Curie (1867-1934) was a Polish-French physicist and chemist. She was the first woman to win a Nobel Prize, the only woman to date to win in two fields, and the only person to win in multiple sciences. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/marie-curie-1867-1934-was-a-polish-french-physicist-and-chemist-she-was-the-first-woman-to-win-a-nobel-prize-the-only-woman-to-date-to-win-in-two-fields-and-the-only-person-to-win-in-multiple-sciences-her-achievements-included-a-theory-of-radioactivity-a-term-that-she-coined-techniques-for-isolating-radioactive-isotopes-and-the-discovery-of-two-elements-polonium-and-radium-image458813162.html
RM2HJCMTA–Marie Curie (1867-1934) was a Polish-French physicist and chemist. She was the first woman to win a Nobel Prize, the only woman to date to win in two fields, and the only person to win in multiple sciences. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium.
Carbon isotopes. Atomic Structure from Carbon-12 to Carbon-14. Atomic Particles: protons, neutrons, electrons. Vector illustration for science Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/carbon-isotopes-atomic-structure-from-carbon-12-to-carbon-14-atomic-particles-protons-neutrons-electrons-vector-illustration-for-science-image389827550.html
RF2DJ650E–Carbon isotopes. Atomic Structure from Carbon-12 to Carbon-14. Atomic Particles: protons, neutrons, electrons. Vector illustration for science
Military gas mask seen in low key. Copy space. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/military-gas-mask-seen-in-low-key-copy-space-image256206139.html
RMTTR5F7–Military gas mask seen in low key. Copy space.
Kupiskis, Lithuania - March 2022:Kaliumjodid tablets for use in case of nuclear accident or attack, if radioactive iodine would be released into the a Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kupiskis-lithuania-march-2022kaliumjodid-tablets-for-use-in-case-of-nuclear-accident-or-attack-if-radioactive-iodine-would-be-released-into-the-a-image465540440.html
RF2J1B5G8–Kupiskis, Lithuania - March 2022:Kaliumjodid tablets for use in case of nuclear accident or attack, if radioactive iodine would be released into the a
3d rendering of Radiopharmaceuticals, these are radioactive medications or radioisotopes. These medications can be delivered orally in pill form. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-radiopharmaceuticals-these-are-radioactive-medications-or-radioisotopes-these-medications-can-be-delivered-orally-in-pill-form-image598246305.html
RF2WN8D7D–3d rendering of Radiopharmaceuticals, these are radioactive medications or radioisotopes. These medications can be delivered orally in pill form.
Radioactive Isotopes - Science. April 22, 1955. (Photo by United Press Photo). Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/radioactive-isotopes-science-april-22-1955-photo-by-united-press-photo-image463580848.html
RM2HX5X2T–Radioactive Isotopes - Science. April 22, 1955. (Photo by United Press Photo).
RMC1HGE5–Potassium Iodide Pills - Treatment for Radiation Exposure (Iodine Tablets)
Senior Airman Timothy Burnett, 51st Medical Group Aerospace Medicine Squadron bioenvironmental engineering journeyman and Airman 1st Class Benjamin Thompson, 51st Civil Engineer Squadron emergency management apprentice use equipment that allows them to identify simulated radioactive isotopes and take airborne readings to assess danger levels during an exercise at Osan Air Base, Republic of Korea, Aug 4, 2015. The scenario is part of a week-long series of intense, integrated base emergency response capability training exercises for initial and follow-on responders. (U.S. Air Force photo/Staff Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/senior-airman-timothy-burnett-51st-medical-group-aerospace-medicine-squadron-bioenvironmental-engineering-journeyman-and-airman-1st-class-benjamin-thompson-51st-civil-engineer-squadron-emergency-management-apprentice-use-equipment-that-allows-them-to-identify-simulated-radioactive-isotopes-and-take-airborne-readings-to-assess-danger-levels-during-an-exercise-at-osan-air-base-republic-of-korea-aug-4-2015-the-scenario-is-part-of-a-week-long-series-of-intense-integrated-base-emergency-response-capability-training-exercises-for-initial-and-follow-on-responders-us-air-force-photostaff-image215458018.html
RMPEEXW6–Senior Airman Timothy Burnett, 51st Medical Group Aerospace Medicine Squadron bioenvironmental engineering journeyman and Airman 1st Class Benjamin Thompson, 51st Civil Engineer Squadron emergency management apprentice use equipment that allows them to identify simulated radioactive isotopes and take airborne readings to assess danger levels during an exercise at Osan Air Base, Republic of Korea, Aug 4, 2015. The scenario is part of a week-long series of intense, integrated base emergency response capability training exercises for initial and follow-on responders. (U.S. Air Force photo/Staff
Chalk River Research Laboratories, Canada. Radioactive Isotopes Open New Horizons in Scientific Research -- Microchemical work with fission product is done with sensitive instruments. Because of the dangers of radiation, quantities of radio-active materials must be kept infinitesimally. April 23, 1953. (Photo by National Film Board Photo). Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chalk-river-research-laboratories-canada-radioactive-isotopes-open-new-horizons-in-scientific-research-microchemical-work-with-fission-product-is-done-with-sensitive-instruments-because-of-the-dangers-of-radiation-quantities-of-radio-active-materials-must-be-kept-infinitesimally-april-23-1953-photo-by-national-film-board-photo-image463580892.html
RM2HX5X4C–Chalk River Research Laboratories, Canada. Radioactive Isotopes Open New Horizons in Scientific Research -- Microchemical work with fission product is done with sensitive instruments. Because of the dangers of radiation, quantities of radio-active materials must be kept infinitesimally. April 23, 1953. (Photo by National Film Board Photo).
Yttrium is a chemical element with the symbol Y and atomic number 39. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/yttrium-is-a-chemical-element-with-the-symbol-y-and-atomic-number-39-image415993721.html
RM2F4P46H–Yttrium is a chemical element with the symbol Y and atomic number 39.
First Pictures Of Britain's Atomic Research Laboratories -- One of the first pictures taken inside the laboratories of Britain's atomic energy research establishment at Harwell, Berkshire. The picture shows a phase ***** the production of Radioactive Isotopes. A sample is being taken out after irradiation in a Gleep. The face of the pile is in the background. The sample is in an aluminum container, which during irradiation is placed in one of the holes in the graphite blocks (bottom right) and the latter are pushed manually in and out of the pile through a hole in the concrete shield. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/first-pictures-of-britains-atomic-research-laboratories-one-of-the-first-pictures-taken-inside-the-laboratories-of-britains-atomic-energy-research-establishment-at-harwell-berkshire-the-picture-shows-a-phase-the-production-of-radioactive-isotopes-a-sample-is-being-taken-out-after-irradiation-in-a-gleep-the-face-of-the-pile-is-in-the-background-the-sample-is-in-an-aluminum-container-which-during-irradiation-is-placed-in-one-of-the-holes-in-the-graphite-blocks-bottom-right-and-the-latter-are-pushed-manually-in-and-out-of-the-pile-through-a-hole-in-the-concrete-shield-image463566409.html
RM2HX57K5–First Pictures Of Britain's Atomic Research Laboratories -- One of the first pictures taken inside the laboratories of Britain's atomic energy research establishment at Harwell, Berkshire. The picture shows a phase ***** the production of Radioactive Isotopes. A sample is being taken out after irradiation in a Gleep. The face of the pile is in the background. The sample is in an aluminum container, which during irradiation is placed in one of the holes in the graphite blocks (bottom right) and the latter are pushed manually in and out of the pile through a hole in the concrete shield.
Peaceful use of atom. Two female technicians prepare radioactive isotopes for medical and industrial use. They work with remote Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-peaceful-use-of-atom-two-female-technicians-prepare-radioactive-isotopes-32394112.html
RMBTKK0G–Peaceful use of atom. Two female technicians prepare radioactive isotopes for medical and industrial use. They work with remote
Kupiskis, Lithuania - March 2022: Demand for iodine tablets high after Putin's nuclear threats. Potassium iodide for use in case of radioactive contam Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kupiskis-lithuania-march-2022-demand-for-iodine-tablets-high-after-putins-nuclear-threats-potassium-iodide-for-use-in-case-of-radioactive-contam-image483225762.html
RM2K24RAX–Kupiskis, Lithuania - March 2022: Demand for iodine tablets high after Putin's nuclear threats. Potassium iodide for use in case of radioactive contam
Specialist container with warning sticker and engraving containing radioactive isotope Promethium 147, Melbourne 2015 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-specialist-container-with-warning-sticker-and-engraving-containing-135984872.html
RFHW6J2G–Specialist container with warning sticker and engraving containing radioactive isotope Promethium 147, Melbourne 2015
tablets containing iodine Kaliumiodid and Natriumiodid for use in case of radioactive contamination Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/tablets-containing-iodine-kaliumiodid-and-natriumiodid-for-use-in-case-of-radioactive-contamination-image463359444.html
RF2HWRRKG–tablets containing iodine Kaliumiodid and Natriumiodid for use in case of radioactive contamination
Peaceful use of atom. Two female technicians prepare radioactive isotopes for medical and industrial use. They work with remote Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-peaceful-use-of-atom-two-female-technicians-prepare-radioactive-isotopes-50049914.html
RMCWBY4X–Peaceful use of atom. Two female technicians prepare radioactive isotopes for medical and industrial use. They work with remote
tablets containing iodine Sodium iodide and Potassium iodide for use in case of radioactive contamination Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/tablets-containing-iodine-sodium-iodide-and-potassium-iodide-for-use-in-case-of-radioactive-contamination-image463359771.html
RF2HWRT37–tablets containing iodine Sodium iodide and Potassium iodide for use in case of radioactive contamination
Dramatic eco background - nuclear fallout, hazardous accident with radioactive isotopes in air, black apocalyptic rain, ecological catastrophe Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/dramatic-eco-background-nuclear-fallout-hazardous-accident-with-radioactive-isotopes-in-air-black-apocalyptic-rain-ecological-catastrophe-image354858528.html
RF2BH95JT–Dramatic eco background - nuclear fallout, hazardous accident with radioactive isotopes in air, black apocalyptic rain, ecological catastrophe
Marie Curie with some of her female students. Curie (1867-1934) was a Polish-French physicist and chemist. She was the first woman to win a Nobel Prize, the only woman to date to win in two fields, and the only person to win in multiple sciences. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Photographed by Bain News Service, circa 1910-1915. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/marie-curie-with-some-of-her-female-students-curie-1867-1934-was-a-polish-french-physicist-and-chemist-she-was-the-first-woman-to-win-a-nobel-prize-the-only-woman-to-date-to-win-in-two-fields-and-the-only-person-to-win-in-multiple-sciences-her-achievements-included-a-theory-of-radioactivity-a-term-that-she-coined-techniques-for-isolating-radioactive-isotopes-and-the-discovery-of-two-elements-polonium-and-radium-photographed-by-bain-news-service-circa-1910-1915-image458813049.html
RM2HJCMM9–Marie Curie with some of her female students. Curie (1867-1934) was a Polish-French physicist and chemist. She was the first woman to win a Nobel Prize, the only woman to date to win in two fields, and the only person to win in multiple sciences. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Photographed by Bain News Service, circa 1910-1915.
tablets containing iodine Sodium iodide and Potassium iodide for use in case of radioactive contamination Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/tablets-containing-iodine-sodium-iodide-and-potassium-iodide-for-use-in-case-of-radioactive-contamination-image463359820.html
RF2HWRT50–tablets containing iodine Sodium iodide and Potassium iodide for use in case of radioactive contamination
Marie and Pierre Curie in their laboratory in Paris. Illustration from Le Petit Parisien, Jan, 10, 1904. Marie Curie (1867-1934) was a Polish-French physicist and chemist and multiple Nobel laureate. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Pierre Curie (1859-1906) was a French physicist, a pioneer in crystallography, magnetism, piezoelectricity and radioactivity, and Nobel laureate. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/marie-and-pierre-curie-in-their-laboratory-in-paris-illustration-from-le-petit-parisien-jan-10-1904-marie-curie-1867-1934-was-a-polish-french-physicist-and-chemist-and-multiple-nobel-laureate-her-achievements-included-a-theory-of-radioactivity-a-term-that-she-coined-techniques-for-isolating-radioactive-isotopes-and-the-discovery-of-two-elements-polonium-and-radium-pierre-curie-1859-1906-was-a-french-physicist-a-pioneer-in-crystallography-magnetism-piezoelectricity-and-radioactivity-and-nobel-laureate-image458812041.html
RM2HJCKC9–Marie and Pierre Curie in their laboratory in Paris. Illustration from Le Petit Parisien, Jan, 10, 1904. Marie Curie (1867-1934) was a Polish-French physicist and chemist and multiple Nobel laureate. Her achievements included a theory of radioactivity (a term that she coined), techniques for isolating radioactive isotopes, and the discovery of two elements, polonium and radium. Pierre Curie (1859-1906) was a French physicist, a pioneer in crystallography, magnetism, piezoelectricity and radioactivity, and Nobel laureate.
Kupiskis, Lithuania - March 2022: Demand for iodine tablets high after Putin's nuclear threats. Potassium iodide for use in case of radioactive contam Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kupiskis-lithuania-march-2022-demand-for-iodine-tablets-high-after-putins-nuclear-threats-potassium-iodide-for-use-in-case-of-radioactive-contam-image465540447.html
RF2J1B5GF–Kupiskis, Lithuania - March 2022: Demand for iodine tablets high after Putin's nuclear threats. Potassium iodide for use in case of radioactive contam
Chien-shiung Wu (1912-1997) assembling an electrostatic generator at Smith College Physics Laboratory, circa 1942. Wu was a Chinese-American physicist who worked on the Manhattan Project, helping to develop the process for separating uranium metal into the U-235 and U-238 isotopes by gaseous diffusion. In 1956, Wu and Tsung-Dao Lee experimentally confirmed a theory that parity is violated during weak radioactive decay, overturning many basic assumptions of particle physics. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chien-shiung-wu-1912-1997-assembling-an-electrostatic-generator-at-smith-college-physics-laboratory-circa-1942-wu-was-a-chinese-american-physicist-who-worked-on-the-manhattan-project-helping-to-develop-the-process-for-separating-uranium-metal-into-the-u-235-and-u-238-isotopes-by-gaseous-diffusion-in-1956-wu-and-tsung-dao-lee-experimentally-confirmed-a-theory-that-parity-is-violated-during-weak-radioactive-decay-overturning-many-basic-assumptions-of-particle-physics-image526958288.html
RM2NH90JT–Chien-shiung Wu (1912-1997) assembling an electrostatic generator at Smith College Physics Laboratory, circa 1942. Wu was a Chinese-American physicist who worked on the Manhattan Project, helping to develop the process for separating uranium metal into the U-235 and U-238 isotopes by gaseous diffusion. In 1956, Wu and Tsung-Dao Lee experimentally confirmed a theory that parity is violated during weak radioactive decay, overturning many basic assumptions of particle physics.
3d rendering of Radiopharmaceuticals, these are radioactive medications or radioisotopes. These medications can be delivered orally in pill form. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-rendering-of-radiopharmaceuticals-these-are-radioactive-medications-or-radioisotopes-these-medications-can-be-delivered-orally-in-pill-form-image598246303.html
RF2WN8D7B–3d rendering of Radiopharmaceuticals, these are radioactive medications or radioisotopes. These medications can be delivered orally in pill form.
RMC1HGE7–Potassium Iodide Pills - Treatment for Radiation Exposure (Iodine Tablets)
CBRN soldiers assigned to the 44the Chemical Company, Fort Hood, Texas, remove a victim's clothes before moving him through the line to be decontaminated and medically treated following the simulation of a chemical agent that contaminated the area and local community May 13. The U.S. Army North Command ensured that training incorporated the interaction with local emergency authorities in order to simulate realistic conditions, provided the evaluation of the overall mission readiness and level of Defense CBRN Response Force posture. 44th Chemical Company trains with local Yakima community for C Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-cbrn-soldiers-assigned-to-the-44the-chemical-company-fort-hood-texas-129521610.html
RMHEM63P–CBRN soldiers assigned to the 44the Chemical Company, Fort Hood, Texas, remove a victim's clothes before moving him through the line to be decontaminated and medically treated following the simulation of a chemical agent that contaminated the area and local community May 13. The U.S. Army North Command ensured that training incorporated the interaction with local emergency authorities in order to simulate realistic conditions, provided the evaluation of the overall mission readiness and level of Defense CBRN Response Force posture. 44th Chemical Company trains with local Yakima community for C
BELFAST, UK - CIRCA JUNE 2018: The Gilbert 238 Atomic Energy Lab from 1951 is the most dangerous toy, as it contained Uranium ore samples and radioact Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/belfast-uk-circa-june-2018-the-gilbert-238-atomic-energy-lab-from-1951-is-the-most-dangerous-toy-as-it-contained-uranium-ore-samples-and-radioact-image210701200.html
RFP6P7ET–BELFAST, UK - CIRCA JUNE 2018: The Gilbert 238 Atomic Energy Lab from 1951 is the most dangerous toy, as it contained Uranium ore samples and radioact
Crystalline Bismuth Metal Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/crystalline-bismuth-metal-image478626786.html
RM2JPK99P–Crystalline Bismuth Metal
Sunrise looking down on the cooling towers of Chapelcross Nuclear Power Station, Annandale, Dumfries and Galloway, Scotland, UK Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-sunrise-looking-down-on-the-cooling-towers-of-chapelcross-nuclear-10902046.html
RMA41D6R–Sunrise looking down on the cooling towers of Chapelcross Nuclear Power Station, Annandale, Dumfries and Galloway, Scotland, UK
Polish physicist Marie Sklodowska Curie, ca. 1920. She coined the term 'radioactivity' and developed techniques for isolating radioactive isotopes, and the discovered of two chemical elements, polonium and radium. - (BSLOC 2015 1 67) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-polish-physicist-marie-sklodowska-curie-ca-1920-she-coined-the-term-170541864.html
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Kupiskis, Lithuania - March 2022: Demand for iodine tablets high after Putin's nuclear threats. In a nuclear accident, radioactive substances (radioac Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/kupiskis-lithuania-march-2022-demand-for-iodine-tablets-high-after-putins-nuclear-threats-in-a-nuclear-accident-radioactive-substances-radioac-image483225761.html
RM2K24RAW–Kupiskis, Lithuania - March 2022: Demand for iodine tablets high after Putin's nuclear threats. In a nuclear accident, radioactive substances (radioac
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Types of radiation. penetrating power through paper, human, aluminum, lead, and water. Alpha, beta, gamma, x-rays and neutrons. vector illustration. Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/types-of-radiation-penetrating-power-through-paper-human-aluminum-lead-and-water-alpha-beta-gamma-x-rays-and-neutrons-vector-illustration-image389827382.html
RF2DJ64PE–Types of radiation. penetrating power through paper, human, aluminum, lead, and water. Alpha, beta, gamma, x-rays and neutrons. vector illustration.
Polish physicist Marie Sklodowska Curie, ca. 1920. She coined the term 'radioactivity' and developed techniques for isolating radioactive isotopes, and the discovered of two chemical elements, polonium and radium. - (BSLOC 2015 1 67) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-polish-physicist-marie-sklodowska-curie-ca-1920-she-coined-the-term-87526140.html
RMF2B4DG–Polish physicist Marie Sklodowska Curie, ca. 1920. She coined the term 'radioactivity' and developed techniques for isolating radioactive isotopes, and the discovered of two chemical elements, polonium and radium. - (BSLOC 2015 1 67)
Beta-plus and Beta-minus decay. The substance Change the number of protons in the nucleus and forms a new stable element Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/beta-plus-and-beta-minus-decay-the-substance-change-the-number-of-protons-in-the-nucleus-and-forms-a-new-stable-element-image389827713.html
RF2DJ6569–Beta-plus and Beta-minus decay. The substance Change the number of protons in the nucleus and forms a new stable element
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