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This book is a companion to the EngineerGuy YouTube series of Michael Faraday's 19th century lectures on The Chemical History of a Candle. This books contains the lectures, 14 illustrations, introductory guides and seven student activities with teaching guides.
From the primitive pine-torch to the paraffin candle, how wide an interval! between them how vast a contrast! The means adopted by man to illuminate his home at night, stamp at once his position in the scale of civilisation. The fluid bitumen of the far East, blazing in rude vessels of baked earth; the Etruscan lamp, exquisite in form, yet ill adapted to its office; the whale, seal, or bear fat, filling the hut of the Esquimaux or Lap with odour rather than light; the huge wax candle on the glittering altar, the range of gas lamps in our streets,—all have their stories to tell. All, if they could speak (and, after their own manner, they can), might warm our hearts in telling, how they have ministered to man's comfort, love of home, toil, and devotion. Surely, among the millions of fire-worshippers and fire-users who have passed away in earlier ages, some have pondered over the mystery of fire; perhaps some clear minds have guessed shrewdly near the truth. Think of the time man has lived in hopeless ignorance: think that only during a period which might be spanned by the life of one man, has the truth been known. Atom by atom, link by link, has the reasoning chain been forged. Some links, too quickly and too slightly made, have given way, and been replaced by better work; but now the great phenomena are known—the outline is correctly and firmly drawn—cunning artists are filling in the rest, and the child who masters these Lectures knows more of fire than Aristotle did. The candle itself is now made to light up the dark places of nature; the blowpipe and the prism are adding to our knowledge of the earth's crust; but the torch must come first.
Read Along or Enhanced eBook: WHAT MAKES A CANDLE BURN? Solid wax is somehow changed into light and heat. But how? Travel back in time to December 28, 1848 in London, England to one of the most famous juvenile science Christmas lectures at the Royal Institution. British scientist Michael Faraday (1791-1867) encouraged kids to carefully observe a candle and to try to figure out how it burned. Known as one of the best science experimenters ever, Faraday’s passion was always to answer the basic questions of science: “What is the cause? Why does it occur?” Since Faraday’s lecture, “The Chemical History of a Candle,” was published in 1861, it’s never been out of print. Oddly, till now, it’s never been published as a children’s picture book. Faraday originally gave seven lectures on how a candle burns. Pattison has adapted the first 6000-word lecture to about 650 words for modern elementary students.
This Very Short Introduction traces the history and cultural impact of the elements on humankind, and examines why people have long sought to identify the substances around them. Looking beyond the Periodic Table, the author takes the reader on an engaging and entertaining tour: from the Greek philosophers who propounded a system with four elements - earth, air, fire, and water - to the modern-day scientists who are able to create their own.
Chemical History of a Candle introduces a string of lectures concerning the chemistry and physics of fire held by Michael Faraday. Michael Faraday (1791 –1867) was an English scientist who contributed to the study of electromagnetism and electrochemistry. His main discoveries include the principles underlying electromagnetic induction, diamagnetism and electrolysis.
Self-taught chemist and scientist Michael Faraday was one of the most prolific and prescient researchers to emerge from England in the nineteenth century. In this captivating collection of talks and lectures, Faraday sets forth some of his most influential theories, findings, and conjectures.
In To light such a candle, renowned chemist and science historian Keith Laidler examines the progress of science and technology over the centuries, tracing the often separate paths of these pursuits, showing how they have ultimately worked together to transform everyday life. Faraday's pure research on electricity, for example, had immense technological implications, while Maxwell's theory of electromagnetic radiation led directly to the discovery of radio transmission, something of which Maxwell himself had no conception. Conversely, the early steam engines were by no means science-based, but they led directly to the science of thermodynamics, one of the most fundamental branches of pure science. Illuminated by many fascinating stories from the history of science, this book provides a powerful argument for the relevance of pure research, and gives the general reader and scientist alike an idea of the nature and importance of the links between science and technology.