Age, Biography and Wiki
Andrew N. Schofield was born on 1 November, 1930 in England. Discover Andrew N. Schofield's Biography, Age, Height, Physical Stats, Dating/Affairs, Family and career updates. Learn How rich is He in this year and how He spends money? Also learn how He earned most of networth at the age of 93 years old?
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Age |
94 years old |
Zodiac Sign |
Scorpio |
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1 November 1930 |
Birthday |
1 November |
Birthplace |
England |
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We recommend you to check the complete list of Famous People born on 1 November.
He is a member of famous with the age 94 years old group.
Andrew N. Schofield Height, Weight & Measurements
At 94 years old, Andrew N. Schofield height not available right now. We will update Andrew N. Schofield's Height, weight, Body Measurements, Eye Color, Hair Color, Shoe & Dress size soon as possible.
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Who Is Andrew N. Schofield's Wife?
His wife is Margaret Green (m.1961)
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Margaret Green (m.1961) |
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Andrew N. Schofield Net Worth
His net worth has been growing significantly in 2022-2023. So, how much is Andrew N. Schofield worth at the age of 94 years old? Andrew N. Schofield’s income source is mostly from being a successful . He is from . We have estimated
Andrew N. Schofield's net worth
, money, salary, income, and assets.
Net Worth in 2023 |
$1 Million - $5 Million |
Salary in 2023 |
Under Review |
Net Worth in 2022 |
Pending |
Salary in 2022 |
Under Review |
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Not Available |
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Andrew N. Schofield Social Network
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Timeline
He accepted a chair at the Institute of Science and Technology in Manchester (UMIST) in 1968 and developed a 1.5-m radius geotechnical centrifuge there. Following Roscoe's death in 1970, he returned to Cambridge in 1974 and was appointed as a Professor in the Cambridge University Engineering Department to lead the Soil Mechanics group. Working with the mechanical design engineer Phillip Turner, he developed a 5-m radius geotechnical centrifuge at Cambridge University that continues to be heavily used as of 2010. He was elected a Fellow of the Royal Society in 1992. Schofield retired from the university in 1997, but his continued work is evidenced by the publication of a book in 2005.
Schofield was influenced by work on geotechnical centrifuge modeling by G.I. Pokrovsky in the USSR to study geotechnical engineering and soil mechanics problems. He developed a prototype geotechnical centrifuge in Cambridge and later adapted a centrifuge in the English Electric Company in Luton, UK, to be used for geotechnical modelling in 1966.
With Ken Roscoe and Peter Wroth in 1958 he published "On the Yielding of Soils", which showed how plasticity theory and critical state soil mechanics could be used to describe the coupled volumetric and shear behavior of soils. This led to the development of a constitutive model known as 'Cam Clay' that was formalized in a text by Schofield and Wroth in 1968.
Andrew Schofield studied engineering and graduated from Christ's College, Cambridge in 1951. He then worked in the Nyasaland Protectorate, Africa (now Malawi) office of Scott and Wilson Ltd. where he performed research on lateritic soils and low cost road construction. He returned to Cambridge University to work with Professor Kenneth H. Roscoe on his PhD, which he completed in 1961. He became an Assistant Lecturer in 1961 and a Fulbright Fellow and a California Institute of Technology Fellow in 1963/4. He was elected Fellow of Churchill College, Cambridge in 1964. He was elected as a Fellow of the Royal Academy of Engineering in 1986 and as a Fellow of the Royal Society in 1992.
Andrew Noel Schofield FRS FREng (born 1 November 1930) is a British soil mechanics engineer and an emeritus professor of geotechnical engineering at the University of Cambridge.
Schofield was born on 1 November 1930, the son of Rev John Noel Schofield and Winifred Jane Mary Eyles in Cambridge, England. He married Margaret Eileen Green in 1961. He retired from Cambridge University in 1997.
By Professor Schofield the behaviour of remoulded soil (be it sand, silt or clay) is governed by friction and particle interlocking. By Professor Schofield, The Mohr Coulomb equation, popularised by Terzaghi, and underpinning developments in soil mechanics since the 1930s, is simply wrong. Terzaghi made soil mechanics a science, made a mistake when he said soil’s strength is provided by cohesion and friction.