Ernst Waldfried Josef Wenzel Mach ( MAHK; Austrian German: [ˈɛrnst ˈmax] ; 18 February 1838 – 19 February 1916) was an Austrian physicist and philosopher who contributed to the understanding of the physics of shock waves. The ratio of the speed of a flow or object to that of sound is named the Mach number in his honor. As a philosopher of science, he was a major influence on logical positivism and American pragmatism. Through his criticism of Isaac Newton's theories of space and time, he foreshadowed Albert Einstein's theory of relativity.
Mach was born in Chrlice (German: Chirlitz), Moravia, Austrian Empire (now part of Brno in the Czech Republic). His father Jan Nepomuk Mach, who had graduated from Charles-Ferdinand University in Prague, acted as tutor to the noble Brethon family in Zlín in eastern Moravia. His grandfather Wenzl Lanhaus, an administrator of the Chirlitz estate, was also master builder of the streets there. His activities in that field later influenced Ernst Mach's theoretical work. Some sources give Mach's birthplace as Tuřany (German: Turas, also part of Brno), the site of the Chirlitz registry office. It was there that Mach was baptized by Peregrin Weiss. Mach later became a socialist and an atheist, but his theory and life were sometimes compared to Buddhism. Heinrich Gomperz called Mach the "Buddha of Science" because of his phenomenalist approach to the "Ego" in his Analysis of Sensations.
Up to the age of 14, Mach was educated at home by his parents. He then entered a gymnasium in Kroměříž (German: Kremsier), where he studied for three years. In 1855, he became a student at the University of Vienna, where he studied physics and for one semester medical physiology, receiving a doctorate in physics in 1860 under Andreas von Ettingshausen, with his thesis Über elektrische Ladungen und Induktion and his habilitation the following year. His early work focused on the Doppler effect in optics and acoustics.
In 1864, Mach became professor of mathematics at the University of Graz after having declined a chair in surgery at the University of Salzburg. In 1866, he was appointed professor of physics. During this period, Mach continued his work in psycho-physics and in sensory perception. In 1867, he took the chair of experimental physics at Charles-Ferdinand University, where he stayed for 28 years before returning to Vienna. In 1871, he was elected a member of the Royal Bohemian Society of Sciences.
Mach's main contribution to physics involved his description and photographs of spark shock-waves and then ballistic shock-waves. He described how when a bullet or shell moved faster than the speed of sound, it created a compression of air in front of it. Using schlieren photography, he and his son Ludwig photographed the shadows of the invisible shock waves. During the early 1890s, Ludwig invented a modification of the Jamin interferometer that allowed for much clearer photographs. But Mach also made many contributions to psychology and physiology, including his anticipation of gestalt phenomena, his discovery of the oblique effect and of Mach bands, an inhibition-influenced type of visual illusion, and especially his discovery of a non-acoustic function of the inner ear that helps control human balance.
One of the best-known of Mach's ideas is the so-called Mach principle, the physical origin of inertia. This was never written down by Mach but was given a graphic verbal form, attributed by Philipp Frank to Mach: "When the subway jerks, it's the fixed stars that throw you down."
In 1900, Mach became godfather of physicist Wolfgang Ernst Pauli, who was also named after him.
Mach was also well-known for his philosophy, developed in close interplay with his science. He defended a type of phenomenalism, recognizing only sensations as real. That position seemed incompatible with the view of atoms and molecules as external, mind-independent things. After an 1897 lecture by Ludwig Boltzmann at the Imperial Academy of Science in Vienna, Mach said, "I don't believe that atoms exist!"
In 1898, Mach survived a paralytic stroke, and in 1901, he retired from the University of Vienna and was appointed to the upper chamber of the Austrian Parliament. On leaving Vienna in 1913, he moved to his son's home in Vaterstetten, near Munich, where he continued writing and corresponding until his death in 1916, one day after his 78th birthday.
Born to a liberal family, Mach lamented that a "very reactionary-clerical" period followed the 1848 revolutions, prompting him to plan to emigrate to America, although he never did.
In 1901, Mach accepted an appointment to the Austrian House of Lords but declined ennoblement because he thought it inappropriate for a scientist. He was on good personal terms with the Social Democrat politician Viktor Adler and left money in his will to the Social Democrat newspaper Arbeiter-Zeitung.
Mach was critical of the European powers' colonial conquests, saying that they "will constitute...the most distasteful chapter of history for coming generations".
Most of Mach's initial studies in experimental physics concentrated on the interference, diffraction, polarization and refraction of light in different media under external influences. From there followed explorations in supersonic fluid mechanics. Mach and physicist-photographer Peter Salcher presented their paper on this subject in 1887; it correctly describes the sound effects observed during the supersonic motion of a projectile. They deduced and experimentally confirmed the existence of a shock wave of conical shape, with the projectile at the apex. The ratio of the speed of a fluid to the local speed of sound vp/vs is called the Mach number after him. It is a critical parameter in the description of high-speed fluid movement in aerodynamics and hydrodynamics. Mach also contributed to cosmology the hypothesis known as Mach's principle.
From 1895 to 1901, Mach held a newly created chair for "the history and philosophy of the inductive sciences" at the University of Vienna. In his historico-philosophical studies, Mach developed a phenomenalistic philosophy of science that became influential in the 19th and 20th centuries, empirio-criticism, a rigorously positivist and radically empiricist philosophy established by the German philosopher Richard Avenarius and further developed by Mach, Joseph Petzoldt, and others, according to which all we can know is our sensations.
Mach originally saw scientific laws as summaries of experimental events, constructed for the purpose of making complex data comprehensible, but later emphasized mathematical functions as a more useful way to describe sensory appearances. Thus, scientific laws, while somewhat idealized, have more to do with describing sensations than with reality as it exists beyond sensations:
The goal which it (physical science) has set itself is the simplest and most economical abstract expression of facts.
When the human mind, with its limited powers, attempts to mirror in itself the rich life of the world, of which it itself is only a small part, and which it can never hope to exhaust, it has every reason for proceeding economically.
In reality, the law always contains less than the fact itself, because it does not reproduce the fact as a whole but only in that aspect of it which is important for us, the rest being intentionally or from necessity omitted.