Nicholas John Hoff
Affiliations: | 1957 | Polytechnic Institute of Brooklyn, Brooklyn, New York, United States | |
1957-1971 | Aeronautical engineering | Stanford University, Palo Alto, CA |
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"Nicholas John Hoff"Bio:
(1906 - 1997)
https://www.nae.edu/29201/Dr-Nicholas-J-Hoff
https://www.nae.edu/188060/NICHOLAS-JHOFF-19061997
http://faculty.poly.edu/~rdingre/Genealogy_2.html
https://www.genealogy.math.ndsu.nodak.edu/id.php?id=121049
Parents
Sign in to add mentorAurel Boreslav Stodola | research assistant | 1928 | ETH Zürich (Physics Tree) | |
Stephen P Timoshenko | grad student | 1942 | Stanford | |
(Stresses in a Space Curved Bar Reinforcing the Edge Cut-out in a Monocoque Fuselage.) |
Children
Sign in to add traineeBruno Adrian Boley | grad student | 1946 | Polytechnic University |
Paul A. Libby | grad student | 1947 | Polytechnic Institute of Brooklyn (Fluid Dynamics and Combustion Tree) |
Ahmed Cemal Eringen | grad student | 1948 | Polytechnic Institute of Brooklyn |
Harold Liebowitz | grad student | 1947-1950 | Polytechnic Institute of Brooklyn |
Josef Singer | grad student | 1957 | Polytechnic Institute of New York University |
Lawrence Wilmer Rehfield | grad student | 1965 | Stanford |
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Publications
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Hoff NJ, Muser C. (1982) Stress Concentration Factors for Cylindrically Orthotropic Plates Journal of Composite Materials. 16: 313-317 |
Hoff NJ. (1981) Stress Concentrations in Cylindrically Orthotropic Composite Plates With a Circular Hole Journal of Applied Mechanics. 48: 563-569 |
Sendelbeck RL, Ljungström O, Ljungström B, et al. (1975) Experimental Study of Pressure Vessel Models Having Fabrication Flaws Journal of Applied Mechanics. 42: 335-340 |
Hoff NJ. (1975) The Effect of Geometric Nonlinearities on the Creep Buckling Time of Axially Compressed Circular Cylindrical Shells Journal of Applied Mechanics. 42: 225-226 |
Shun C, Hoff NJ. (1975) Bending of thin circular rings International Journal of Solids and Structures. 11: 139-152 |
Sendelbeck RS, Hoff NJ. (1972) Loading rig in which axially compressed thin cylindrical shells buckle near theoretical values: A holding and alignment test rig for use when buckling thin circular cylindrical shells is described. The consistency of high buckling values is demonstrated along with results concerning different holding restrictions Experimental Mechanics. 12: 372-376 |
Narasimhan KY, Hoff NJ. (1971) Snapping of Imperfect Thin-Walled Circular Cylindrical Shells of Finite Length Journal of Applied Mechanics. 38: 162-171 |
Honikman TC, Hoff NJ. (1971) The effect of variations in the creep exponent on the buckling of circular cylindrical shells International Journal of Solids and Structures. 7: 1685-1695 |
Koga T, Hoff NJ. (1969) The axisymmetric buckling of initially imperfect complete spherical shells International Journal of Solids and Structures. 5: 679-697 |
Pittner EV, Hoff NJ. (1969) Creep buckling of simply supported moderately thin circular cylindrical shells Acta Mechanica. 8: 116-125 |