Munir Ahmad Khan (Urdu: منير احمد خان; 20 May 1926 – 22 April 1999), NI, HI, FPAS, was a Pakistani nuclear engineer who is credited, among others, with being the "father of the atomic bomb program" of Pakistan for his leading role in developing the nation's nuclear weapons. From 1972 to 1991, Khan served as the chairman of the Pakistan Atomic Energy Commission (PAEC) who directed and oversaw the completion of the clandestine bomb program from its earliest efforts to develop the atomic weapons to their ultimate nuclear testings in May 1998. His early career was mostly spent in the International Atomic Energy Agency and he used his position to help establish the International Centre for Theoretical Physics in Italy and an annual conference on physics in Pakistan. As chair of PAEC, Khan was a proponent of the nuclear arms race with India whose efforts were directed towards concentrated production of reactor-grade to weapon-grade plutonium while remained associated with nation's key national security programs. After retiring from the Atomic Energy Commission in 1991, Khan provided the public advocacy for nuclear power generation as a substitute for hydroelectricity consumption in Pakistan and briefly tenured as the visiting professor of physics at the Institute of Applied Sciences in Islamabad. Throughout his life, Khan was subjected to political ostracization due to his advocacy for averting nuclear proliferation and was rehabilitated when he was honored with the Nishan-i-Imtiaz (Order of Excellence) by the President of Pakistan in 2012— thirteen years after his death in 1999.
Early life and education Munir Ahmad Khan was born in Kasur, Punjab in the British India on 20 May 1926 into a Kakazai family that had long been settled in Kasur. After completing his matriculation in 1942 in Kasur, Khan enrolled at the Government College University in Lahore and was a contemporary of Abdus Salam— the Nobel Laureate in Physics in 1978. In 1946, Khan graduated with a Bachelor of Arts (BA) in mathematics and enrolled at the Punjab University to study engineering in 1949. In 1951, Khan graduated with a Bachelor of Science in Engineering (BSE) in electrical engineering and was noted for his academic standing when he was named to the Roll of Honor for his class of 1951. After graduation, Khan served on an engineering faculty of the University of Engineering and Technology (UET) in Lahore, and earned a Fulbright Scholarship to study engineering in the United States. Under the Fulbright Scholarship program, Khan attended North Carolina State University to resume his graduate studies in electrical engineering and graduated with a Master of Science (MS) in electrical engineering in 1953. His master's thesis, titled: Investigation on Model Surge Generator contained fundamental work on applications of the impulse generator. In the United States, Khan gradually lost interest in electrical engineering and took an interest in physics when he started taking graduate courses on topics involving the thermodynamics and kinetic theory of gases at the Illinois Institute of Technology. In 1953, Khan left his graduate studies in physics at the Illinois Institute of Technology when he accepted to be a participant in the Atoms for Peace policy of the United States and started his training program in nuclear engineering offered by the North Carolina State University in cooperation with the Argonne National Laboratory in Illinois in 1953. In 1957, Khan completed his training at the Argonne National Laboratory, and college classes in nuclear engineering, that allowed him to graduate with an MS degree in nuclear engineering, with strong emphasis on nuclear reactor physics, from North Carolina State University.
Early professional work
After graduating from North Carolina State University (NCSU) in 1953, Khan found employment with Allis-Chalmers in Wisconsin before joining the Commonwealth Edison company in Illinois. At both engineering firms, Khan worked on power generation equipment such as generators and mechanical pumps and participated in a federal contract awarded to Commonwealth Edison to design and construct the Experimental Breeder Reactor I (EBR-I) which built up his interests in practical applications of physics that led him to attend the Illinois Institute of Technology, and to attend the training program in nuclear engineering offered by NCSU. In 1957, Khan served as a Resident Research Associate in the Nuclear Engineering Division at the Argonne National Laboratory where he was trained as a nuclear reactor physicist and worked on design modifications of the Chicago Pile-5 (CP-5) reactor before working for a brief time at American Machine and Foundry as a consultant until 1958.
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![Munir Ahmad Khan: The ICTP building in Italy that was established from the lobbying of Khan on behalf of Salam at IAEA in 1964.: 101–105 [33]](https://upload.wikimedia.org/wikipedia/commons/thumb/8/8f/International_Centre_for_Theoretical_Physics.jpg/330px-International_Centre_for_Theoretical_Physics.jpg?utm_source=en.wikipedia.org&utm_campaign=parser&utm_content=thumbnail)
![Munir Ahmad Khan: An Example of Implosion schema of a nuclear weapon, Fat Man, built by the United States in the 1940s.[61]](https://upload.wikimedia.org/wikipedia/commons/thumb/e/ef/Implosion_Nuclear_weapon.svg/500px-Implosion_Nuclear_weapon.svg.png?utm_source=en.wikipedia.org&utm_campaign=parser&utm_content=thumbnail)
![Munir Ahmad Khan: The nuclear weapons test, codename Chagai-I, conducted at the rocky granite mountain in May 1998.[62] The testing site for the detonation was selected, and then built around 1977–78.[62]](https://upload.wikimedia.org/wikipedia/commons/thumb/3/3f/Chagaiatomictests.jpg/500px-Chagaiatomictests.jpg?utm_source=en.wikipedia.org&utm_campaign=parser&utm_content=thumbnail)

