Ernst Mach
Ernst Waldfried Josef Wenzel Mach (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. Through his criticism of Isaac Newton's theories of space and time, he foreshadowed Albert Einstein's theory of relativity.
Also recorded as Ernst Mach Jr · Ernst Waldfried Joseph Wenzl Mach
Ernst Mach

Charles Scolik · Österreichische Nationalbibliothek · Public domain
- Name
- Ernst Mach
- Birth Name
- Ernst Waldfried Josef Wenzel Mach
- Born
- 18 February 1838
- Birthplace
- Brno, Moravia, Austrian Empire
- Died
- 19 February 1916
- Place of death
- Vaterstetten, Bavaria, German Empire
- Education
- University of Vienna (Ph.D., 1860; Dr. phil. hab., 1861)
- Known for
- Mach band Mach diamonds Mach number Mach reflection Mach wave Mach's principle Criticism of Newton's bucket argument Empirio-criticism Oblique effect Relationalism Shock waves Stereokinetic stimulus
- Nationality
- Kingdom of Bohemia
- Occupation
- physicist · philosopher · pedagogue · professor · photographer · politician · university teacher
- Movements
- Western philosophy
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Ernst Waldfried Josef Wenzel Mach (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. Through his criticism of Isaac Newton's theories of space and time, he foreshadowed Albert Einstein's theory of relativity.
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Key facts
Key facts
• Name — Ernst Mach • Birth Name — Ernst Waldfried Josef Wenzel Mach • Born — 18 February 1838 • Birthplace — Brno, Moravia, Austrian Empire • Died — 19 February 1916 • Place of death — Vaterstetten, Bavaria, German Empire • Fields — Physicist • Workplaces — University of Graz Charles-Ferdinand University (Prague) University of Vienna • Education — University of Vienna (Ph.D., 1860; Dr. phil. hab., 1861) • Doctoral Advisor — Andreas von Ettingshausen • Doctoral Students — Heinrich Gomperz Ottokar Tumlirz • Notable Students — Andrija Mohorovičić • Known for — Mach band Mach diamonds Mach number Mach reflection Mach wave Mach's principle Criticism of Newton's bucket argument Empirio-criticism Oblique effect Relationalism Shock waves Stereokinetic stimulus • Thesis Title — Über elektrische Ladungen und Induktion • Thesis Year — 1860 • Children — Ludwig Mach • Footnotes — He was the godfather of Wolfgang Pauli.
Early life
Early life
Mach was born in Chrlice (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 (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. • Illustration — Self-Portrait by Ernst Mach (1886) featured in "Analysis of Sensations", also known as "view from the left eye" Up to the age of 14, Mach was educated at home by his parents. He then entered a gymnasium in Kroměříž (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.
Professional research
Professional research
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." • Illustration — Ernst Mach's historic 1887 photograph (shadowgraph) of a bow shockwave around a supersonic bullet fired from a Werndl carbine. 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. • Illustration — Ernst Mach in 1905
Politics
Politics
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".
Physics
Physics
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 v p /v s 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.
Phenomenological constructivism
Phenomenological constructivism
According to Alexander Riegler, Mach's work was a precursor to the influential perspective known as constructivism. Constructivism holds that all knowledge is constructed rather than received by the learner. He took an exceptionally non-dualist, phenomenological position. The founder of radical constructivism, Ernst von Glasersfeld, gave a nod to Mach as an ally. • Illustration — Spinning chair devised by Mach to investigate the experience of motion On the other hand, there is also a reasonable case for viewing Mach simply as an empiricist and a precursor of the logical empiricists and the Vienna Circle. On this view, the purpose of science is to detail functional relationships between observations: "The goal which it (physical science) has set itself is the simplest and most economical abstract expression of facts."
Physiology
Physiology
In 1873, independently of each other, Mach and the physiologist and physician Josef Breuer discovered how the sense of balance (i.e., the perception of the head's imbalance) functions, tracing its management by information the brain receives from the movement of a fluid in the semicircular canals of the inner ear. That the sense of balance depends on the three semicircular canals was discovered in 1870 by the physiologist Friedrich Goltz, but Goltz did not discover how the balance-sensing apparatus functions. Mach devised a swivel chair to test his theories, and Floyd Ratliff has suggested that this experiment may have paved the way to Mach's critique of a physical conception of absolute space and motion.
Psychology
Psychology
• Illustration — Exaggerated contrast between edges of the slightly differing shades of gray, appears as soon as they make contact In the area of sensory perception, psychologists remember Mach for the optical illusion called Mach bands. The effect exaggerates the contrast between edges of the slightly differing shades of gray as soon as they make contact, by triggering edge-detection in the human visual system. More clearly than anyone before or since, Mach made the distinction between what he called physiological (specifically visual) and geometrical spaces. Mach's views on mediating structures inspired B. F. Skinner's strongly inductive position, which paralleled Mach's in the field of psychology.
Eponyms
Eponyms
In homage his name was given to: • 3949 Mach, an asteroid • Mach, a lunar crater • Mach bands, an optical illusion • Mach diamonds, seen in supersonic exhausts • Mach Five, the car used by Speed Racer • Mach number, the unit for speed relative to the speed of sound
Identity and origins
Identity and origins
The authorities additionally record the headings Ernst Mach Jr and Ernst Waldfried Joseph Wenzl Mach. His recorded language was German. His recorded confession was atheism. He married Ludovica Aloisia Carolina Marussig. One child is recorded: Ludwig Mach.
Career and activity
Career and activity
Ernst Mach worked in physics, philosophy of science, natural science, education and philosophy. His work is associated with Western philosophy. He was employed by University of Vienna, University of Graz and Charles University. Recorded positions include Member of the House of Lords (Austria) and Rector of Charles University. He belonged to German Academy of Sciences Leopoldina, Göttingen Academy of Sciences and Humanities in Lower Saxony and Bavarian Academy of Sciences and Humanities. He worked at Kroměříž and Vaterstetten.

Ernst Mach
Heliogravüre by H. F. Jütte, Leipzig · Zeitschrift für Physikalische Chemie, Band 40, von 1902
Life and career
Dated record
Life and career
The full dated record · 2 entries
1838
Ernst Mach born at Brno-Chrlice.
1916
Ernst Mach died at Vaterstetten.
Empirio-criticism
Empirio-criticism
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: Mach's positivism influenced many Russian Marxists, such as Alexander Bogdanov. In 1908, Lenin wrote a philosophical work, Materialism and Empirio-criticism, in which he criticized Machism and the views of "Russian Machists". His main criticisms were that Mach's philosophy led to solipsism and to the absurd conclusion that nature did not exist before humans: Lenin also accused Mach of plagiarizing George Berkeley's views on this basis: Chapter 1.1, "Sensations and Complexes of Sensations" In accordance with empirio-critical philosophy, Mach opposed Ludwig Boltzmann and others who proposed an atomic theory of physics. Since one cannot observe things as small as atoms directly, and since no atomic model at the time was consistent, the atomic hypothesis seemed unwarranted to Mach, and perhaps not sufficiently "economical". Mach had a direct influence on the Vienna Circle philosophers and logical positivism in general. • Illustration — Bust of Mach in the Rathauspark (City Hall Park) in Vienna, Austria Several principles are attributed to Mach that distill his ideal of physical theorization, called "Machian physics": • It should be based entirely on directly observable phenomena (in line with his positivistic leanings) • It should completely eschew absolute space and time in favour of relative motion • Any phenomena that seem attributable to absolute space and time (e.g., inertia and centrifugal force) should instead be seen as emerging from the distribution of matter in the universe. The last is singled out, particularly by Einstein, as "the" Mach's principle. Einstein cited it as one of the three principles underlying general relativity. In 1930, he wrote, "it is justified to consider Mach as the precursor of the general theory of relativity" and "the whole direction of thought of this theory conforms with Mach's". Einstein further reported that he had read David Hume and Mach's work "with eagerness and admiration shortly before finding relativity theory" and that "very possibly, I wouldn't have come to the solution without those philosophical studies". Before his death, Mach apparently rejected Einstein's theory. Einstein knew his theories did not fulfill all Mach's principles, and no subsequent theory has either.
Influence
Influence
Friedrich Hayek wrote that, when he attended the University of Vienna from 1918 to 1921, "as far as philosophical discussion went it essentially revolved around Mach's ideas". Mach's work has also been cited as an influence on the Vienna Circle, being described as a "major precursor of logical positivism". Members of the Circle organized the "Ernst Mach Society" as a vehicle for discussion of their ideas. Mach's work was a "forerunner" of Gestalt psychology.
Primary material
Documents and archives
Institutional database
- Wikidata, structured authority record Q93996: Ernst Mach
Scholarly · Wikimedia Foundation
authority file
- Gemeinsame Normdatei 16144392-8, Symposium on Ernst Mach.
General reference · Deutsche Nationalbibliothek
reference work
- “Ernst Mach”, English Wikipedia, consulted as further reading
Reputable secondary · Wikipedia
Notes from the source article
Cited by Wikipedia
Notes from the source article
These works are cited by the source article, in its own numbering. They are recorded as its citations, not as sources VALÉORINE has verified.
- 1.Cite Dictionary.com Mach
- 2.Ernst Mach. Encyclopædia Britannica. 2016.
- 3.Blackmore. Ernst Mach: A Deeper Look. Springer. 34. 1992.
- 4.Reichenbach, H. Contributions of Ernst Mach to Fluid Mechanics. Annual Review of Fluid Mechanics. 15. 1. 1–29. January 1983. 0066-4189.
- 5.Instantaneous Photographs of Bullets in Motion. The Standard Gauge. 17 March 1888.
- 6.Gieser, Suzanne. The Innermost Kernel Depth Psychology and Quantum Physics – Wolfgang Pauli's Dialogue with C.G. Jung. Springer. 12. 2005.
- 7.Blackmore. Ernst Mach: A Deeper Look. Springer. 19. 1992.
- 8.Johnston, William M. The Austrian Mind. An Intellectual and Social History, 1848–1938. University of California Press. 70. 2023.
- 9.Blum, Mark E. The Austro-Marxists 1890–1918. A Psychobiographical Study. University Press of Kentucky. 2021.
- 10.Blackmore, John T. Ernst Mach. His Life, Work, and Influence. University of California Press. 223. 2023.
- 11.Einstein, Albert (1973). Albert Einstein to Armin Weiner, September 18, 1930, unpublished letter from the Archives of the Burndy Library in Norwalk, Connecticut, cited by Holton, Gerald J. "Where is Reality? The Answers of Einstein." In Science and Synthesis, pp. 55. Edited by UNESCO. Berlin: Springer Verlag, 1971. Reprinted in Thematic Origins of Scientific Thought: Kepler to Einstein. Cambridge: Mass.: Harvard University Press. p. 55.
- 12.Stadler. The Present Situation in the Philosophy of Science. Springer Netherlands. 349. 2010.
- 13.von Glasersfeld, Ernst. Piaget and the Radical Constructivist Epistemology. 1974.
- 14.F. A. von Hayek, "Diskussionsbemergungen über Ernst Mach und das sozialwissenschaftliche Denken in Wien," Symposium (Freiburg, 1967), pp. 41 44
- 15.Ernst Mach. Oxford Reference.
- 16.Stadler. The Vienna Circle and Logical Empiricism Re-evaluation and Future Perspectives. Springer Netherlands. xvi. 2006.
- 17.Pojman, Paul, "Ernst Mach", The Stanford Encyclopedia of Philosophy (Winter 2023 Edition), Edward N. Zalta & Uri Nodelman (eds.)
Bibliography printed in the source article · 56
- Mach, Ernst. Optisch-akustische Versuche. Calve. 1873.
- Mach, Ernst. Beiträge zur Analyse der Empfindungen. Gustav Fischer. 1886.
- Mach, E. Photographische Fixirung der durch Projectile in der Luft eingeleiteten Vorgänge. Sitzungsber. Kaiserl. Akad. Wiss., Wien, Math.-Naturwiss. Cl. 95. Abt. II. 764–780. 1887. 10.1002/andp.18872681008.
- Mach, Ernst. Principien der Wärmelehre. Johann Ambrosius Barth. 1900.
- Mach, Ernst. Die Mechanik in ihrer Entwicklung historisch-kritisch dargestellt. F. A. Brockhaus. 1901.
- Mach, Ernst. Erkenntnis und Irrtum: Skizzen zur Psychologie der Forschung. Johann Ambrosius Barth. 1905.
- Mach, Ernst. The Science of Mechanics. The Open Court Publishing Co. 1919.
- Mach, Ernst. Contributions to the Analysis of Sensation. Open Court Publishing Company. 1897.
- Popular Scientific Lectures (1895); Revised & enlarged 3rd edition (1898)
- Sugden, Sherwood J. B. Space and Geometry from the Point of View of Physical Inquiry. Monist. 14. 1. 1–32. 1903. 0026-9662.
- History and Root of the Principle of the Conservation of Energy (1911)
- The Principles of Physical Optics (1926)
- Knowledge and Error (1976)
- Principles of the Theory of Heat (1986)
- Fundamentals of the Theory of Movement Perception (2001)
- Anderson, J. Research in Supersonic Flight and the Breaking of the Sound Barrier. From Engineering Science to Big Science: The NACA and NASA Collier Trophy Research Project Winners. NASA. 1998.
- Barbour, Julian. The End of Time: The Next Revolution in Physics. Oxford University Press. 2001. 978-0-19-514592-2.
- Baatz, Ursula. Ernst Mach — A Deeper Look. Springer. 183–199. 1992. 978-0-7923-1853-8.
- Blackmore, John T. Ernst Mach. His Life, Work, and Influence. University of California Press. 1972. 9780520018495.
- Bunnin, Nicholas. The Blackwell Dictionary of Western Philosophy. John Wiley & Sons. 2008. 978-0-470-99721-5.
- Chiesa, Mecca. Radical Behaviorism: The Philosophy and the Science. Authors Cooperative. 1994. 978-0-9623311-4-5.
- Cohen, Robert S. Ernst Mach: Physicist and Philosopher. Springer. 1975. 90-277-0016-8.
- Hawkins, J.E. Sketches of Otohistory - Part 8:The Emergence of Vestibular Science. Audiology and Neurotology. 10. 4. 185–190. 12 April 2005. 10.1159/000085076.
- Heinzmann, Gerhard. Henri Poincaré. Stanford Encyclopedia of Philosophy. 10 October 2017.
- Hentschel, Klaus. On Feyerabend's version of 'Mach's theory of research and its relation to Einstein'. Studies in History and Philosophy of Science Part A. 16. 4. 387–394. 1985. 0039-3681.
- Hentschel, Klaus. Die Korrespondenz Duhem-Mach: Zur 'Modellbeladenheit' von Wissenschaftsgeschichte. Annals of Science. 45. 1. 73–91. 1988. 0003-3790.
- Lenin, V.I. Materialism and Empirio-criticism: Critical Comments on a Reactionary Philosophy. 1909.
- Mehra, Jagdish. The Historical Development of Quantum Theory. Springer. 2001. 978-0-387-95180-5.
- Pais, Abraham. Subtle is the Lord: The Science and the Life of Albert Einstein. OUP. 283. 2005. 978-0-19-280672-7.
- Penrose, Roger. The Road to Reality: A Complete Guide to the Laws of the Universe. Random House. 2016. 978-1-4464-1820-8.
- Pojman, Paul. Ernst Mach. Stanford Encyclopedia of Philosophy. 21 May 2008.
- Ratliff, Floyd. Mach bands: quantitative studies on neural networks in the retina. Holden-Day. 1965.
- Ratliff, Floyd. Ernst Mach, Physicist and Philosopher. 1975.
- Riegler, Alexander. Paradigms in Theory Construction. Springer. 235–255. 2011. 978-1-4614-0914-4.
- Scott, Jeff. Ernst Mach and Mach Number. Aerospaceweb.org. 9 November 2003.
- Sonnert, Gerhard. Einstein and Culture. Humanity Books. 2005. 978-1-59102-316-6.
- Steila, Daniela. Nauka i revoljucija. Recepciia empiriokriticizma v russkoi kul'ture (1877-1910 gg.). Akademicheskii Proekt. 2013. 978-5-8291-1459-6.
- Wolters, Gereon. Einstein and the Changing Worldviews of Physics. Springer – Birkhäuser. 2012. 978-0-8176-4940-1.
- Yourgrau, Palle. A World Without Time: The Forgotten Legacy of Gödel and Einstein. Allen Lane. 2005. 978-0-7139-9387-5.
- Erik C. Banks: Ernst Mach's World Elements. A Study in Natural Philosophy. Dordrecht: Kluwer (now Springer), 2013.
- John Blackmore and Klaus Hentschel (eds.): Ernst Mach als Außenseiter. Vienna: Braumüller, 1985 (with select correspondence).
- Springer. Ernst Mach's Vienna 1895–1930: Or Phenomenalism as Philosophy of Science. 2001. 978-0-7923-7122-9.
- John T. Blackmore, Ryoichi Itagaki and Setsuko Tanaka (eds.): Ernst Mach's Science. Kanagawa: Tokai University Press, 2006.
- John T. Blackmore, Ryoichi Itagaki and Setsuko Tanaka: Ernst Mach's Influence Spreads. Bethesda: Sentinel Open Press, 2009.
- John T. Blackmore, Ryoichi Itagaki and Setsuko Tanaka: Ernst Mach's Graz (1864–1867), where much science and philosophy were developed. Bethesda: Sentinel Open Press, 2010.
- John T. Blackmore: Ernst Mach's Prague 1867–1895 as a human adventure, Bethesda: Sentinel Open Press, 2010.
- Everdell, William. The First Moderns. Profiles in the Origins of Twentieth-Century Thought. University of Chicago Press. 1997.
- Haller. Ernst Mach – Werk und Wirkung. Hoelder-Pichler-Tempsky. 1988.
- Hentschel, Klaus. Reader's Guide to the History of Science. Routledge. 2013. 978-1-134-26301-1.
- Hoffmann. Ernst Mach: Studien und Dokumente zu Leben und Werk. Deutscher Verlag der Wissenschaften. 1991. 978-3-326-00548-5.
- Kockelmans, Joseph J. Philosophy of science. The historical background. The Free Press. 1968.
- Procházka, Jiří. Ernst Mach /1838–1916/ Genealogie, 3 vols. Brno, 2007–2010. ISBN|978-80-903476-0-1.
- Procházka, Jiří. Ernst Mach /1838-1916/ Genealogie" Brno 2OO7. ISBN|80-903476-3-0.
- Procházka, Jiří. Ernst Mach /1838-1916/ Curriculum vitae", Brno-Vienna 2O14. ISBN|978-80-903476-7-0.
- Prosser. Ernst Mach and the development of Physics – Conference Papers. Universitas Carolina Pragensis. 1991.
- Thiele, Joachim. Wissenschaftliche Kommunikation – Die Korrespondenz Ernst Machs. Hain. 1978.
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Wikidata, structured authority record Q93996: Ernst MachWikimedia Foundation
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Gemeinsame Normdatei 16144392-8, Symposium on Ernst Mach.Deutsche Nationalbibliothek
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Ernst Mach studied at convent Gymnasium in Seitenstetten, Piaristické gymnázium v Kroměříži and University of Vienna. The record notes the qualification professor. He trained under August Kunzek. His recorded influences include Andreas von Ettingshausen, Auguste Comte, Herbert Spencer and Richard Avenarius.
Ernst Mach received Bavarian Maximilian Order for Science and Art and honorary member of the Physics Association (Frankfurt am Main, Germany).
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