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🇺🇸Katherine
Johnson

Calculated the trajectory that put humans on the Moon, Apollo 11, 1969
College at age 15 · NASA "computer" for 33 years · John Glenn trusted her numbers over the machine
Born August 26, 1918 · White Sulphur Springs, WV · Died February 24, 2020

Katherine Johnson at NASA, 1983

Fast Facts

Born
August 26, 1918
Zodiac
♍ Virgo (Aug 23 – Sep 22)
Origin
American
College
Age 15, West Virginia State
NASA career
1953–1986 (33 years)
Apollo 11
Lunar trajectory, 1969
Presidential Medal
Freedom, 2015
Hidden Figures
Book 2016, Film 2016
Died
February 24, 2020, age 101

When John Glenn was preparing to become the first American to orbit the Earth in February 1962, NASA had just installed electronic computers to handle the trajectory calculations. Glenn refused to fly until a specific person had checked the numbers by hand. The person he asked for was Katherine Johnson — a Black woman working in a segregated section of the Langley Research Center in Virginia, whom Glenn apparently trusted more than the machines. She verified the numbers. The mission proceeded. Glenn completed three orbits and splashed down safely in the Atlantic Ocean. The story is almost too perfectly emblematic of Katherine Johnson's career: decades of essential, invisible work, done with a precision that the most sophisticated technology of the age could not exceed, performed by a person whom the era's social arrangements had designed to keep invisible.

Katherine Coleman was born on August 26, 1918, in White Sulphur Springs, West Virginia, the youngest of four children of Joshua Coleman, a farmer and handyman, and Joylette Coleman, a teacher. She showed an early and pronounced aptitude for mathematics — she was reportedly counting everything around her almost as soon as she could walk — and her father, determined that his children receive a proper education in a state that provided no public high school for Black students in their county, moved the family one hundred miles to Institute, West Virginia, to be near West Virginia State College. Katherine entered the college at fifteen, in 1933, majoring in mathematics and French. She graduated summa cum laude in 1937 at age eighteen, having taken every mathematics course the college offered and persuaded a professor to create a new graduate course in analytic geometry specifically for her.

She taught school in Virginia for several years, then in 1953 was hired by the National Advisory Committee for Aeronautics — which became NASA in 1958 — as one of a group of Black women mathematicians assigned to the West Area Computing Unit at Langley. These women were known as "computers" — the human predecessors to the electronic machines that would eventually replace them. They worked in a segregated facility, used separate bathrooms and cafeteria facilities, and were rarely credited by name in the reports their calculations made possible. Johnson was assigned to the Flight Mechanics Branch and proved so capable that she was kept there permanently, becoming the first woman in the Flight Research Division to be credited as a co-author on a research report.

"I counted everything. I counted the steps to the road, the steps up to church, the number of dishes and silverware I washed. Anything that could be counted, I did."

— Katherine Johnson

Her specific expertise was orbital mechanics — the mathematics of how objects move through space under the influence of gravity. She calculated the trajectory for Alan Shepard's 1961 suborbital flight, the first American human spaceflight. She calculated John Glenn's 1962 orbital trajectory and manually verified the electronic computer's outputs at his personal request. She worked on the calculations for the Apollo program throughout the 1960s, including the trajectory analysis for Apollo 11 — the mission that landed Neil Armstrong and Buzz Aldrin on the Moon in July 1969 — and she contributed crucially to the Apollo 13 rescue in 1970, helping calculate the procedures that brought the damaged spacecraft safely back to Earth. She also worked on the space shuttle program and early planning for the Mars mission before retiring in 1986 after thirty-three years of service.

"We will always have STEM with us. Some things will drop out of the public eye and will go away, but there will always be science, engineering, and technology. And there will always, always be mathematics."

— Katherine Johnson

She remained largely unknown to the general public until 2015, when NASA named a building at the Langley Research Center in her honor and President Barack Obama awarded her the Presidential Medal of Freedom. The following year, Margot Lee Shetterly published Hidden Figures, a book about Johnson and her colleagues Mary Jackson and Dorothy Vaughan; the film adaptation, released in December 2016, became one of the highest-grossing films of that year and introduced Johnson — played by Taraji P. Henson — to a global audience. Katherine Johnson died on February 24, 2020, at the age of one hundred and one. She had lived to see herself recognized as one of the essential mathematical minds of the space age, the woman whose numbers were precise enough that an astronaut trusted them over the machines, and whose brain helped put human beings on the surface of another world.

"Like what you do, and then you will do your best."

— Katherine Johnson

Achievement Timeline

1933
Enters college at age 15 Enrolls at West Virginia State College, majoring in mathematics and French. Takes every available mathematics course, then persuades a professor to create a new graduate-level course for her.
1937
Graduates summa cum laude at 18 Finishes her degree with the highest honors. Goes on to teach school in Virginia before eventually joining NACA in 1953.
1953
Joins NACA (future NASA) as a "computer" Hired at the West Area Computing Unit at Langley. Proves so capable that she is permanently assigned to the Flight Mechanics Branch, working on actual research problems rather than routine computation.
1961
Calculates Alan Shepard's trajectory Computes the trajectory for America's first human spaceflight — a 15-minute suborbital mission that launches the US space program into the human era.
1962
John Glenn asks her to verify the computer — by hand Before his orbital flight, Glenn requests that Johnson personally check the electronic computer's trajectory calculations. She does. He flies. The mission succeeds.
1969
Apollo 11 Moon landing trajectory Her orbital mechanics calculations contribute to the mission that lands Neil Armstrong and Buzz Aldrin on the lunar surface on July 20, 1969.
2015
Presidential Medal of Freedom President Obama awards her the nation's highest civilian honor at age 97. NASA names a building at Langley in her honor the same year.

NASA Human Spaceflight Milestones Johnson Supported

Mission Year Achievement Johnson's Role
Freedom 7 (Shepard) 1961 First American in space Trajectory calculations
Friendship 7 (Glenn) 1962 First American to orbit Earth Trajectory + manual verification of computer
Apollo 11 1969 First humans on the Moon Lunar trajectory analysis
Apollo 13 1970 Crew rescue after explosion Emergency return trajectory procedures

Katherine Johnson on Video

Katherine Johnson in her own words — NASA interview on her career and the space program

Hidden Figures — the story of Katherine Johnson, Mary Jackson, and Dorothy Vaughan

Why This Matters

Katherine Johnson's story matters on two levels that are inseparable. On the first level: she was among the finest mathematical minds in the history of the American space program, whose orbital mechanics calculations were trusted by astronauts over the electronic computers that would eventually replace human "computers" entirely. Her work was not decorative or supportive — it was load-bearing. Without her numbers, some of the most consequential flights in the history of human exploration could not have proceeded safely. On the second level: she did all of this while working in a segregated facility, in a country that was constructing explicit legal and social barriers to prevent her from fully participating in public life. She walked past signs telling her where she was permitted to sit, used separate bathrooms, and was denied credit for her work for decades. The fact that she persisted, that she was brilliant anyway, and that her brain ultimately proved more precise than the machines — all of this constitutes one of the most important biographies in American science.

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