The only Soviet Nobel laureate in Chemistry, founder of chain reaction theory
In 1927, when Max Bodenstein dismissed his students' phosphorus oxidation data as unreliable, Semyonov sensed an unknown phenomenon instead — he replicated the experiment and discovered branched chain reactions.
He was the founder of Soviet chemical physics and the theorist who established the chain reaction framework. In 1928 he discovered branched chain reactions, providing the theoretical basis for understanding combustion and explosion, for which he shared the 1956 Nobel Prize in Chemistry with Cyril Hinshelwood, the only Soviet chemist ever to receive the honor. He founded the Institute of Chemical Physics of the USSR Academy of Sciences in 1931 and directed it for 55 years; during World War II his combustion and explosion research contributed to the Soviet atomic bomb project. As Vice-President of the Academy of Sciences (1963–1971) and co-founder of the Moscow Institute of Physics and Technology, he was also an organizer who helped design the institutional architecture of Soviet science.
Career timeline
1920–1931Head of Electron Phenomena Lab and Deputy Director, LFTI
1931–1986Founder and Director, Institute of Chemical Physics, USSR Academy of Sciences
1932Full Member, USSR Academy of Sciences
1941–1945Combustion and explosion research for the atomic project
1944–1986Chair of Chemical Kinetics, Moscow State University
1957–1971Academician-Secretary, Chemistry Division, USSR Academy of Sciences
The agronomist whose Michurinist agrobiology dominated Soviet biology for three decades
"The Central Committee of the Party has examined my report and approved it" — closing speech at the August 1948 VASKhNIL session. With that one sentence, classical genetics was banned across the Soviet Union.
Soviet agronomist of Ukrainian peasant origin. His vernalization technique brought him to prominence and from the mid-1930s he dominated Soviet biology. Attacking Mendelian genetics as bourgeois pseudoscience and championing the inheritance of acquired characteristics, he won a decisive victory at the August 1948 VASKhNIL session that banned classical genetics nationwide. He also proposed practical agrotechniques: summer potato planting, millet cultivation. Awarded three Stalin Prizes, eight Orders of Lenin, and Hero of Socialist Labor (1945). Removed in 1965 after Khrushchev's fall; died in Moscow in 1976. Never a party member.
Career timeline
1925–1929Researcher at Gandzha breeding station; developed vernalization
1929–1938Senior specialist, then director, VSGI Odessa
1938–1956, 1961–1962President, All-Union Academy of Agricultural Sciences
1940–1965Director, Institute of Genetics, USSR Academy of Sciences
The Kremlin cardiologist whose letter about Zhdanov's ECG became the seed of the Doctors' Plot
When Kremlin doctors dismissed her infarction diagnosis with 'They believe me, not some sort of Timashuk,' she wrote to higher authorities, and four years later that letter became the seed of the Doctors' Plot.
A Kremlin cardiologist since 1926, Timashuk read Andrei Zhdanov's ECG on 28 August 1948 and diagnosed a myocardial infarction, a finding that senior Kremlin doctors dismissed. She sent three letters of protest to the party and the MGB; four years later these letters were retrieved from the archive and became the evidentiary seed of the fabricated Doctors' Plot of 1953. Awarded the Order of Lenin in January 1953 'for unmasking killer doctors,' she was stripped of it that April after Stalin's death, and Khrushchev's Secret Speech later named her, fixing her public image as an informer.
Career timeline
1898Born in Brest-Litovsk, daughter of a junior NCO
1920Mobilised to fight typhus and cholera epidemics while at Samara medical school
1926Graduated from 1st Moscow University medical faculty; began work at Kremlin hospital (Lechsanupre)
1943–1953Secret informant for the NKVD-MGB
1948.8As head of functional diagnostics, diagnosed Zhdanov with MI and sent letters of protest to higher authorities
1953.1Awarded Order of Lenin 'for unmasking killer doctors'; became a national hero
1953.4Stripped of Order of Lenin after Stalin's death; awarded Order of the Red Banner of Labour in 1954
1964Retired from the Kremlin hospital; petitioned for rehabilitation until her death
The organiser who turned rocket research into a state institution
On 2 November 1937, Kleymenov was arrested after the detention of Georgy Langemak, the institute's chief engineer.
Ivan Kleymenov was a military engineer and administrator who organised the Soviet Union's early rocket work. Linking the Gas Dynamics Laboratory with the Reactive Scientific Research Institute, he helped bring research into the defence system and supported solid-propellant rockets that fed into the later Katyusha programme. The institution he built was then shattered by the Great Purge, which arrested its leading specialists and ended with Kleymenov's execution. He was fully rehabilitated in 1955 and posthumously named a Hero of Socialist Labor in 1991.
Career timeline
1919Joined the RCP(b)
1920–1921Served in Red Army military supply administration
1928–1930Headed workshops at the Air Force Research Institute
1930–1932Deputy head of the engineering section, Soviet Trade Mission in Berlin
1932–1933Head of the Gas Dynamics Laboratory
1933–1937First head and director of the Reactive Scientific Research Institute
1937Deputy head of the propeller-and-engine section at TsAGI
1938Executed; rehabilitated for lack of a criminal case in 1955
Academy president who founded organoelement chemistry
When Academy President S. I. Vavilov died in 1951, Politburo member Malenkov offered Nesmeyanov the vacant presidency. Nesmeyanov raised his vegetarian convictions and the 1940 arrest of his brother, whose fate was unknown. Malenkov dismissed every argument: the matter was already decided.
Nesmeyanov was a Soviet chemist and organizer of science, born in Moscow in 1899 and died there in 1980. In 1929 he developed the diazo method for obtaining arylmercury halides, known as the 'Nesmeyanov reaction', later extended to organometallic compounds of thallium, germanium, tin, lead, arsenic, antimony and bismuth. A corresponding member (1939) and then full member (1943) of the USSR Academy of Sciences, he directed the Institute of Organic Chemistry (1939–1954) and founded and directed the Institute of Organoelement Compounds, INEOS (1954–1980). He was President of the Academy from 1951 to 1961. After 1961 he pursued synthetic food research bypassing agriculture, developing processes including artificial black caviar. His awards include twice Hero of Socialist Labour (1969, 1979), the Lenin Prize (1966) and the Stalin Prize first degree (1943).
Career timeline
1939–1954Director, Institute of Organic Chemistry, USSR Academy of Sciences
1943Full member (Academician), Chemical Sciences, USSR Academy of Sciences
1946–1951Academician-Secretary, Chemical Sciences, USSR Academy of Sciences
1948–1951Rector, Moscow State University
1951–1961President, USSR Academy of Sciences
1954–1980Founder and Director, Institute of Organoelement Compounds (INEOS)
In January 1946, Kurchatov told him at their first meeting: "We must create an industrial uranium 'boiler' in the shortest possible time." Dollezhal devoted the rest of his life to reactor design.
An engineer of Czech descent, he was the Soviet Union's chief reactor designer, responsible for the reactors that powered the atomic bomb, the first nuclear power plant, and the nuclear submarine fleet. After meeting Igor Kurchatov in 1946, he designed the A reactor for plutonium production, enabling the first Soviet nuclear test in 1949, and built the AM-1 reactor at Obninsk, the world's first grid-connected nuclear power plant (1954). As founding director of NIKIET for 34 years, he developed the prototypes of every major Soviet reactor line — VVER, RBMK, and naval propulsion — making him a foundational figure of the Soviet atomic establishment. In the aftermath of the Chernobyl disaster, his role in the RBMK design drew sharp criticism, and he stepped down as director in 1986.
Career timeline
1923Graduated MVTU, mechanical engineer
1930–1932Imprisoned in Prompartiya case; OKB-8 OGPU Deputy Chief Engineer
The theoretical pioneer who opened the path to space with packet rockets
At a 1948 scientific council, Tikhonravov argued that clustered 'packet' rockets could place a satellite in orbit — the hall erupted in mockery and jeers. Nine years later, Sputnik 1 circled the Earth.
The theoretical father of Soviet spaceflight. In 1933 he designed GIRD-09, the first Soviet liquid-fuel rocket, and in 1948 he proved mathematically that clustered 'packet' rockets could reach orbit, an idea initially met with ridicule. Sustained by Korolev's support, his work laid the design foundation for Sputnik, Vostok, and Luna. In 1956 he became head of OKB-1's Department No. 9, overseeing satellite and crewed spacecraft design. A classically educated man fluent in Latin, he coined the term 'cosmonaut.'
Career timeline
1932–1933Brigade leader, GIRD; designed GIRD-09, first Soviet liquid-fuel rocket
1934–1938Department head, RNII; liquid-fuel rocket and upper-atmosphere research
1940–1943Led design group for rocket interceptor '302' and Katyusha projectiles
1946–1956Deputy chief / scientific consultant, NII-4; led Tikhonravov Group proving packet-rocket orbital theory (1948)
1956–1974Head, Department No. 9, OKB-1; directed Sputnik, Vostok, Luna, and planetary probe design
1962–1974Professor, Moscow Aviation Institute (MAI)
Mathematician who built Akademgorodok and pioneered explosive applications
When Lavrentiev told students about Poincaré being excused from navigation subjects and mused, "Perhaps we could excuse a few subjects here too," the entire lecture hall roared back: "History of the CPSU!"
A Soviet mathematician and hydrodynamicist who served as founding chairman of the Siberian Branch of the USSR Academy of Sciences (1957–1975) and built Akademgorodok, the science city near Novosibirsk. He made fundamental contributions to the theory of quasiconformal mappings and fluid dynamics, contributed to shaped-charge theory during World War II, and pioneered the use of controlled explosions in construction. In 1953–1955 he served as deputy scientific director of the Arzamas-16 nuclear weapons institute, participated in early Soviet digital computer development, and helped found the Moscow Institute of Physics and Technology. An emblematic figure of the Khrushchev-era eastward expansion of Soviet science, he turned a vision of twenty research institutes and a university in one forest community into a working institution.
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1939–1941, 1945–1948Director, Mathematics Institute, Ukrainian SSR Academy of Sciences
1945–1948Vice-President, Ukrainian SSR Academy of Sciences
1950–1953Director, Institute of Precision Mechanics and Computer Technology
Nuclear administrator who spanned wartime tank armor to peaceful atomic diplomacy
After the first atomic test he followed the radioactive cloud eastward from Semipalatinsk, posing as a doctor studying brucellosis to avoid public panic.
A key administrator of the Soviet nuclear programme, Yemelyanov bridged wartime military metallurgy, nuclear weapons production, and civilian atomic energy. As a metallurgist he won a Stalin Prize for developing cast turrets for the T-34 tank, and in 1945 he was recruited into the atomic project, overseeing scientific and technical work under Vannikov at the First Main Directorate. From 1957 he headed Glavatom, directing the USSR's peaceful nuclear policy and IAEA diplomacy, and as chairman of the State Committee for the Utilization of Atomic Energy under Khrushchev he drove reactor construction across the socialist bloc and the spread of radiation technologies. His memoir On Time, Comrades, and Myself offered a vivid insider's account of Stalin's decision-making on the bomb.
Career timeline
1928–1931Assistant at Moscow Mining Academy; lab head at Central Research Institute of Machine-Building Technology
1932–1934Plenipotentiary of the People's Commissariat of Heavy Industry at Krupp works, Essen and Berlin
Creator of the MESM and BESM, founder of Soviet computing
As the IBM-compatible line began to dominate Soviet computing in the early 1970s, the ailing Lebedev insisted: 'We must not follow their path. We must go our own way.'
Founder of Soviet computer engineering. He built the MESM (continental Europe's first stored-program computer) in a war-damaged monastery outside Kiev (1951) and the BESM-1 (1953). As ITMiVT director for twenty years, he oversaw 15 computer types; his machines performed nuclear weapons calculations, space-flight trajectories, and drove the first operational anti-ballistic-missile system. Elected to the Academy of Sciences in 1953 as its first computing-device specialist, he received the Hero of Socialist Labour (1956), Lenin, Stalin, and State Prizes. He opposed the Cold War shift to IBM-compatible copying, insisting on independent parallel architecture, and his students built the Elbrus supercomputer series. Posthumously awarded the IEEE Computer Pioneer Award (1996).
Career timeline
1928–1946Researcher and Head of Automation Dept., All-Union Electrotechnical Institute (AEI); professor, Moscow Power Engineering Institute
1946–1950Director, Institute of Energetics → Institute of Electrotechnics, Ukrainian Academy of Sciences
1948–1951Led development of the MESM — first stored-program electronic computer in the USSR and continental Europe
1950–1953Head of laboratory at ITMiVT, completed BESM-1
1953–1973Director of ITMiVT — oversaw development of 15 computer types including BESM-2, M-20, and BESM-6
1953–1974Full member, USSR Academy of Sciences (specializing in computing devices)
In 1942, when his wife asked "Will you shave?", Kurchatov replied, "After victory." For seven years he kept his beard until the first Soviet atomic test in 1949. His colleagues simply called him "The Beard" (Boroda).
He was the scientific director who built the Soviet nuclear physics community and led the entire atomic enterprise. In the 1930s at LFTI he helped construct Europe's first cyclotron; appointed scientific head of the atomic bomb project in 1943, he directed the first Soviet nuclear test in 1949. His institute went on to develop the hydrogen bomb, the world's first nuclear power plant (Obninsk, 1954), and nuclear icebreaker reactors. Amid the arms race he pressed for the peaceful use of atomic energy.
The OKB-154 Chief Designer whose third-stage engines pushed Luna and Gagarin into space
Winter 1941, a grain elevator in Berdsk. Exhausted workers digging foundations by night suddenly heard an orchestra. Kosberg's voice rang out: "Song helps us build and live!"
Born the son of a Jewish blacksmith in Slutsk, he worked his way through night school to the Moscow Aviation Institute. During the war his direct-injection systems gave the La-5 and La-7 fighters the climb rate and agility to dominate German aircraft, earning him the Order of the Red Star and the Order of the Patriotic War. After the war he moved OKB-154 (now KB Khimavtomatiki) to Voronezh and pivoted to liquid rocketry; nine months after meeting Korolev in 1958, his bureau delivered the RD-0105, the world's first engine ignited in space, as the third stage that achieved escape velocity for Luna 1, 2, and 3. His RD-0109 then powered the Vostok upper stage that carried Gagarin into orbit, and his design bureau became the sole supplier of upper-stage engines for the entire R-7, Soyuz, and Proton launcher families.
Career timeline
1931Joined CIAM; researched direct fuel-injection systems
1940Deputy Chief Designer of Plant No. 33 OKB, head of direct-injection design bureau
1941–46Chief Designer, OKB-154 (Berdsk): NV-3U direct-injection unit for ASh-82FN engine on La-5, La-7, Tu-2
1946–54OKB-154 relocated to Voronezh; transition to turbojet fuel systems and liquid rocket engines
1958–59RD-0105 (9 months): third-stage engine for Luna 1, 2, 3; first engine ignited in space
1960Lenin Prize; Doctor of Technical Sciences
1961RD-0109: Vostok third stage, Gagarin orbital insertion. Hero of Socialist Labor
1962–65Led upper-stage engine development for Soyuz, Molniya, and Proton launchers
The mathematician who axiomatized modern probability theory
Norbert Wiener testified: "For thirty years now, when I read the works of Academician Kolmogorov, I feel that these are my thoughts too. This is always what I myself wanted to say."
A Soviet mathematician whose 1933 Foundations of the Theory of Probability gave a measure-theoretic axiomatization that made probability a rigorous discipline. He made fundamental contributions across many fields: cohomology in topology, KAM theory, turbulence, algorithmic complexity, and Hilbert's thirteenth problem. At Moscow State University he founded the Department of Probability Theory in 1935, chaired it for three decades, and was elected a full Academician in 1939 at 35. He designed the Soviet Olympiad system and the Kolmogorov boarding school for gifted children, and presided over the Moscow Mathematical Society from 1964 to 1966 and 1974 to 1985. He applied probability theory to artillery fire in World War II and later led reform of Soviet secondary-school mathematics.
Career timeline
1931–1987Professor, Moscow State University
1935–1965Chair, Department of Probability Theory, MSU
1939–1987Academician, USSR Academy of Sciences
1939–1942Academician-Secretary, Division of Physical-Mathematical Sciences
1964–1966, 1974–1985President, Moscow Mathematical Society
1963–1987Founder, Kolmogorov Boarding School (School No. 18)
Physicist who pioneered the Soviet nuclear navy and nuclear power, brought down by Chernobyl
After Chernobyl, Alexandrov said: 'To manage such an institute and the Academy at the same time was extremely difficult. In the end it ended sadly. And when the Chernobyl accident happened, I believe that from that time both my life began to end, and my creative life.'
The physicist who succeeded Kurchatov as the top leader of Soviet nuclear research. During World War II he co-developed the ship degaussing system with Kurchatov, and after Kurchatov's death in 1960 he directed the Kurchatov Institute for 28 years. Under his leadership the nuclear icebreakers Lenin, Arktika and Sibir and the USSR's first nuclear submarines were built; he was the scientific supervisor for both the RBMK and VVER reactor designs. He served as President of the Academy of Sciences from 1975, but the 1986 Chernobyl disaster, in which the RBMK reactor he had championed exploded, brought his scientific life to an end. Three-time Hero of Socialist Labour, recipient of four Stalin Prizes and the Lenin Prize.
Career timeline
1930–1941Senior researcher at LFTI, developed statistical theory of strength and polymer physics (Doctor of Sciences, 1941)
1941–1943Co-developed the 'LFTI system' of ship degaussing with Kurchatov; deployed on Black Sea, Baltic and Northern Fleets
1943–1946Deputy to Kurchatov at Laboratory No. 2 (atomic bomb project)
1946–1955Director of the Institute for Physical Problems (replacing Kapitsa)
1955–1960Deputy director of the Institute of Atomic Energy (IAE)
1960–1988Director of IAE / Kurchatov Institute; chief of naval nuclear propulsion, icebreakers, nuclear submarines, and both reactor lines
1975–1986President of the USSR Academy of Sciences
A radiochemist who helped build the Soviet atomic project
Kurchatov’s urgent call in 1943 brought her back from evacuation to the front line of the atomic project.
Zinaida Yershova was a Soviet radiochemist who connected the industrial production of radioactive elements with nuclear chemistry. Recalled from evacuation in Kazakhstan at Igor Kurchatov’s request in 1943, she led work at Giredmet that produced uranium carbide and metallic uranium for research on the F-1 reactor. She later advanced plutonium, polonium, and tritium technologies, contributing to both the nuclear-weapons program and isotope power sources for space exploration.
Career timeline
1923–1929Student at Moscow State University; research in radiochemistry
1930–1937Moscow Plant of Rare Elements, radium section; head of the physics laboratory
1936–1937Research training at the Paris Radium Institute under Irène Joliot-Curie
1938–1945Head of Giredmet’s radium laboratory; led production of uranium carbide and metallic uranium
1946–1948Head of the First Radiochemical Laboratory at the Institute of Special Materials, NII-9
1947–1954Research on plutonium, polonium, and tritium production technologies; received Stalin Prizes
1960년대–1989Research at VNIINM on polonium chemistry and isotope power sources
When the first Soviet atomic bomb needed a name, Makhnev is said to have added the initial 'С' to 'РД' (jet engine), producing 'РДС', i.e. 'Stalin's jet engine'.
Vasily Makhnev was a Soviet control and armaments administrator who linked the wartime mobilisation apparatus to the post-war atomic project. In 1945 he became one of the nine members and the secretary of the Special Committee established by GKO decree 9887, managing its apparatus and translating scientific and industrial tasks into state administration. His work shows how the Soviet atomic project depended not only on scientific discovery but also on secrecy, concentrated authority, and administrative coordination.
Career timeline
1926–1934Worked in the Workers’ and Peasants’ Inspection system
1934–1940Regional plenipotentiary of the Soviet Control Commission
1940–1941Deputy chair of the Soviet Control Commission and deputy people’s commissar of state control
1941–1945Deputy people’s commissar for armaments and deputy member of the GKO
1945–1953Member and secretary of the Special Committee under the Soviet Council of Ministers
1953–1956Head of scientific-technical information and international relations at the Ministry of Medium Machine Building
1956–1965Head of scientific-technical information and exhibitions at the State Committee for Atomic Energy Use
From heavy-water reactors to the world's largest accelerator: 23-year director of ITEP
After Khrushchev agreed not to arrest ITEP dissidents in 1956, Alikhanov told the four who had spoken at the party meeting: 'If you knew what you were doing, you're heroes. If you didn't, you're fools.'
A founder of Soviet nuclear physics. His positron spectroscopy (1933–40) and magnetic spectrometer built with Kozodayev laid the basis for Soviet nuclear electronics. In the atomic project he was scientific secretary of the Special Committee's council, leading heavy-water reactor development. In 1945 he founded Laboratory No. 3, later ITEP, directing it for 23 years and personally leading the USSR's first heavy-water research reactor (1949) and first industrial heavy-water reactor (1951). ITEP's 7 GeV synchrotron (1961) served as prototype for the 70 GeV Serpukhov accelerator, the world's largest in 1967. Never a Party member, he shielded staff during anti-cosmopolitan purges, signed the 'Letter of 300' against Lysenkoism, and in 1966 joined Kapitsa and Sakharov opposing Stalin's rehabilitation.
Career timeline
1927–1941Researcher, Leningrad Physico-Technical Institute (LFTI)
1933–1941Head of Positron Laboratory, LFTI
1945Scientific Secretary, Scientific-Technical Council of the Special Committee
1945–1968Director, Laboratory No. 3 / ITEP
1947–1951Head, Department of Structure of Matter, MSU
Kaftanov's senior assistant who did the day-to-day organizational work that launched the Soviet atomic project
"We had to summon a hundred people to Moscow, get them entry permits, find them apartments and ration cards, obtain ultra-pure iron for the cyclotron and 99% graphite for the reactor…" (Balezin recalling the frantic logistics of early 1943.)
Born to a poor peasant family and a Red Army volunteer at 14, he was a first-generation Soviet chemist. As senior assistant to GKO science plenipotentiary Sergei Kaftanov, he did the day-to-day work that launched the Soviet atomic project in 1942–43: received the German officer's 'atomic notebook' from Ilya Starinov, arranged its translation and recognized its significance; reviewed Georgy Flyorov's letters; was the first to screen Igor Kurchatov and then brought him to Kaftanov. With Kurchatov he scouted buildings for Laboratory No. 2, secured Moscow entry permits, housing and ration cards for about a hundred scientists, and drafted the Ioffe-Kaftanov petition that led to the 28 September 1942 GKO resolution. He later returned to the Lenin Pedagogical Institute, where he built a scientific school of metal corrosion inhibitors and trained 80 doctoral candidates.
Career timeline
1919–1924Teacher, orphanage director, Komsomol organizer in Birsk district
1925–1932Herzen Pedagogical Institute, Institute of Red Professors, Karpov Institute researcher
1936–1938Head of physical and colloid chemistry, Kuibyshev Medical Institute
1938–1941Chemistry head at Lenin Pedagogical Institute; head of universities dept, Higher Education Committee
1941–1943Senior assistant to GKO plenipotentiary for science: atomic project launch
1944–1948Deputy head, universities and scientific institutions dept, CC VKP(b)
1948–1967Head of general and analytical chemistry, Lenin Pedagogical Institute; founded corrosion inhibitors lab
1967–1982UNESCO advisor for Indian education reform; editorial board chair, Chemistry in School
Chief designer who led the Soviet nuclear weapons design bureau for 46 years
"In our work there are no trivialities." Khariton demanded proof for every letter of every document. When told "it's not as if we'll go to war," he was indignant: "This alone is what we stand on."
A physicist trained at Leningrad Polytechnic and the Cavendish Laboratory in Cambridge. In 1939–1941, together with Yakov Zeldovich, he performed the world's first calculation of the uranium chain reaction. From 1946 to 1992 he served as chief designer and scientific director of KB-11 (Arzamas-16), leading the creation of the first Soviet atomic bomb (1949) and hydrogen bomb (1953). Three-time Hero of Socialist Labor, Lenin Prize laureate, three-time Stalin Prize laureate, and full member of the Soviet Academy of Sciences, he built the technical foundation of Soviet nuclear deterrence.
Career timeline
1921–1931Researcher at Physico-Technical Institute under Semyonov
1926–1928Doctoral research at Cavendish Laboratory, Cambridge (Rutherford & Chadwick)
1931–1946Head of explosives laboratory, Institute of Chemical Physics
1939–1941First uranium chain reaction calculation with Zeldovich
The GKO science plenipotentiary who pressed Stalin to restart atomic bomb research
At the meeting many agencies were opposed, but Stalin paced his office and said: 'We must do it.' (Kaftanov's memoir.)
A Soviet administrator of higher education and science, he served as the State Defense Committee (GKO) plenipotentiary for science and, together with Abram Ioffe, urged Stalin to resume atomic bomb research, producing the GKO resolution of 28 September 1942 that launched the Soviet atomic project. Before the war he chaired the All-Union Committee for Higher Education, overseeing the entire Soviet higher education system, and after the war became the first Minister of Higher Education of the USSR. In the 1950s he served as first deputy minister of culture and chairman of the State Committee for Radio and Television, before returning to academia as rector of his alma mater, the Mendeleev Institute of Chemical Technology.
Career timeline
1919–1926Worker at Donsoda plant, Komsomol organizer
1931–1937Researcher and lecturer, Mendeleev Institute; party secretary, Karpov Institute
1937–1946Chairman, All-Union Committee for Higher Education (VKVSh)
1941–1945GKO plenipotentiary for science
1946–1951Minister of Higher Education of the USSR
1953–1959First Deputy Minister of Culture of the USSR
1959–1962Chairman, State Committee for Radio and Television
1962–1973Rector, Mendeleev Institute of Chemical Technology
The physicist who built an atomic accelerator amid wartime siege
“We flew to Khvoynaya, waited for darkness, then flew low over Lake Ladoga.”
Leonid Nemenov was a Soviet physicist who worked on nuclear physics and accelerator technology. At Kurchatov’s direction, he entered besieged Leningrad to recover vital parts of the Fiztekh cyclotron and led construction of the cyclotron brought into operation at Laboratory No. 2 in 1944. The machine provided the necessary basis for obtaining the first trace quantities of plutonium for chemical analysis.
Career timeline
1929Graduated from Leningrad State University
1929–1939Researcher at the Leningrad Physico-Technical Institute
1939–1944Worked on designing and building a large cyclotron
1943–1944Led construction of the Laboratory No. 2 cyclotron
1949Received a Doctor of Technical Sciences degree
1962Became a professor and full member of the Academy of Sciences of the Kazakh SSR
1968–1980Head of the All-Union Research Institute of Physico-Technical and Radio-Technical Accelerator Measurements
Civilian face of the nuclear program who chaired the State Atomic Energy Committee for 24 years
At the 1986 Chernobyl press conference, he declared: 'Science requires sacrifices.'
One of the founding generation of the Soviet atomic industry, Andranik Petrosyants began in the First Main Directorate administering the atomic bomb project and served from 1962 to 1986 as Chairman of the State Committee for the Use of Atomic Energy, the civilian face of the Soviet nuclear program and its international spokesman for peaceful uses. He is also remembered for telling the world press after the 1986 Chernobyl disaster that 'science requires sacrifices.'
Career timeline
1933–1939Foreman, technical department head, deputy chief engineer at Uralmash (UZTM), Sverdlovsk
1939–1941Deputy People's Commissar of Heavy Machine Building
1941–1943Deputy People's Commissar of Tank Industry
1943–1945Deputy to State Defense Committee (GKO) for tank industry
1947–1953Deputy Chief, First Main Directorate, USSR Council of Ministers — atomic project
1955–1962Deputy Minister of Medium Machine Building
1962–1986Chairman, USSR State Committee for the Use of Atomic Energy
An experimental physicist who explored fission and nuclear isomerism
In 1935, studying bromine's radioactivity, he and the Kurchatov brothers and Mysovsky discovered nuclear isomerism.
Lev Rusinov was a Soviet physicist who expanded the experimental foundations of nuclear physics at the Leningrad Physico-Technical Institute. In 1939, working with Georgy Flerov, he demonstrated that uranium fission releases more than two neutrons per event, a result central to understanding the conditions for a chain reaction. He also investigated nuclear isomerism and the interaction of neutrons and gamma rays with nuclei, and after the war led reactor construction and the organization of nuclear research in Leningrad.
Career timeline
1926–1930Student, Faculty of Physics and Mechanics, Leningrad Polytechnic Institute
1930–1944Researcher, Kurchatov laboratory, Leningrad Physico-Technical Institute
1939–1940Conducted fission-neutron experiments on uranium with Flerov
1944Earned a doctorate in physics and mathematics for research on nuclear isomerism
1948Professor of experimental physics
1946–1960Participant in the Soviet Atomic Project and research-reactor development
1950sScientific director of a research-reactor project with high neutron parameters
From the Gulag to space. The designer whose name was a state secret
April 12, 1961, Baikonur. Korolev's voice over the radio: "Preliminary stage… intermediate… main… LIFT OFF!" Gagarin answered: "Poyekhali! (Off we go!)" — one man's countdown, another's reply, and the human space age began.
A rocket engineer swept up in the 1938 purge, he left his health and his teeth in the Kolyma gold mines. He came back to build the rockets that lifted Sputnik and Gagarin. Yet in his lifetime his name was classified: to the Nobel committee’s inquiry, the USSR answered only “the Chief Designer.” The body the camps had broken did not survive surgery in 1966.
Career timeline
1933From the GIRD rocket group to the new research institute
1938–40Arrested; the Kolyma gold mines
1940–44Aircraft design in a prison design bureau
1946–57Chief Designer: the R-7 ICBM
1957/1961Sputnik; Vostok and Gagarin
1966Dies in surgery; his name published only after death