Mechanics of Materials
Mansfield Merriman
Derives stress and strain in beams, columns and shafts from first principles and ties every formula back to a testing-machine result an undergraduate could reproduce.
link checked 17 Sept 2026Forces, motion, heat and the machines that manage them.
15 topics · 16 curated works
No prior grounding assumed.
Mechanics of Materials
Mansfield Merriman · 1885
Derives stress and strain in beams, columns and shafts from first principles and ties every formula back to a testing-machine result an undergraduate…
Assumes you know the vocabulary.
Machine Design, Construction and Drawing
Henry John Spooner · 1908
Treats machine design as the disciplined translation of a load requirement into a drawn part, arguing that draughting convention is itself part of…
+2 more at this level
Primary sources and full treatments.
A Manual of Applied Mechanics
William John Macquorn Rankine · 1858
Systematises statics, the strength of materials and mechanism into one coherent applied science for the working engineer, rather than treating them…
+11 more at this level
12 of 16 works
Mansfield Merriman
Derives stress and strain in beams, columns and shafts from first principles and ties every formula back to a testing-machine result an undergraduate could reproduce.
link checked 17 Sept 2026Henry John Spooner
Treats machine design as the disciplined translation of a load requirement into a drawn part, arguing that draughting convention is itself part of the engineering, not paperwork after it.
link checked 17 Sept 2026S. L. Loney
Builds up particle and rigid-body dynamics — momentum, energy, impulsive forces, rotation about a fixed axis — as a sequence of solvable problems, the form in which the subject was taught to a century of engineering students.
John H. Lienhard IV & John H. Lienhard V
Argues conduction, convection and radiation are one subject unified by the energy balance, and that a working engineer needs the physical reasoning behind a correlation more than the correlation itself.
link checked 17 Sept 2026William John Macquorn Rankine
Systematises statics, the strength of materials and mechanism into one coherent applied science for the working engineer, rather than treating them as separate crafts.
link checked 17 Sept 2026William John Macquorn Rankine
Builds the thermodynamic cycle later named for its author into a practical design method for prime movers, treating efficiency as an engineering constraint rather than a physicist's abstraction.
link checked 17 Sept 2026William John Macquorn Rankine
Surveys the whole apparatus of mechanical engineering as taught at the time — mechanism, strength, gearing and mill construction — as one discipline rather than a set of trades.
link checked 17 Sept 2026Franz Reuleaux
Argues every machine is a chain of constrained pairs of surfaces, reducible to a symbolic notation, so that mechanisms can be classified and invented systematically instead of by trial.
link checked 17 Sept 2026Lord Rayleigh (John William Strutt)
Derives vibration in strings, bars, membranes and air columns from a single energy method, giving mechanical vibration analysis its standard mathematical toolkit.
link checked 17 Sept 2026Osborne Reynolds
Derives the hydrodynamic theory of lubrication from the equations of viscous flow, showing that a load-bearing oil film forms because a wedge-shaped gap between converging surfaces generates pressure, explaining Tower's puzzling experimental measurements.
Horace Lamb
Treats the motion of fluids as a problem in classical mechanics solvable by potential theory, giving engineering fluid dynamics its mathematical backbone for the following half-century.
link checked 17 Sept 2026Willis H. Carrier
Derives a consistent set of equations relating temperature, humidity and dew point, turning air conditioning from craft practice into a calculable engineering discipline.
link checked 17 Sept 2026