
An Introduction to the Kinetic Theory of Gases (1940)
Address to the Society for Psychical Research (1897)
Context: Ordinarily we communicate intelligence to each other by speech. I first call up in my own brain a picture of a scene I wish to describe, and then, by means of an orderly transmission of wave vibrations set in motion by my vocal chords through the material atmosphere, a corresponding picture is implanted in the brain of anyone whose ear is capable of receiving such vibrations. If the scene I wish to impress on the brain of the recipient is of a complicated character, or if the picture of it in my own brain is not definite, the transmission will be more or less imperfect; but if I wish to get my audience to picture to themselves some very simple object, such as a triangle or a circle, the transmission of ideas will be well-nigh perfect, and equally clear to the brains of both transmitter and recipient. Here we use the vibrations of the material molecules of the atmosphere to transmit intelligence from one brain to another.
An Introduction to the Kinetic Theory of Gases (1940)
Copyright is Brain Damage (2015)
From the film Moog (2004)
Context: The more you get into material and matter, all you realize is in matter, there is energy. There is a blur between energy and consciousness. All material is conscious to some extent or another. All material can respond to some extent or another to vibrations of energy that is different to energy you learn about in physics. There are all sorts of reliable information now on people and animal being able to be able to effect the operations of machines—even of computers—and I think that has great implications for what goes on between a musician and his instrument. There is a level of reality where there is no time, and there is no space, there is just energy. And we have contact with that through the intermediate layers, so, if the right channels—if the right connections are established, I don’t see why a piece of matter, a piece of broken glass or and old record can’t make contact through this very high level of reality that has access to everything past and future. I suppose my instruments do retain some sort of memory of me. I know that when I’m working on them I feel (not explicitly, I don’t hear voices in my head or anything) that I’m making a connection with it. The circuit diagram, that is then converted into a circuit board, which then becomes a part of an instrument is something that is a record that I made. So I guess in that sense it is something that is certainly a memory.
Address to the British Association for the Advancement of Science (1898)
Context: The structure of brain and nerves being similar, it is conceivable there may be present masses of such nerve coherers in the brain whose special function it may be to receive impulses brought from without through the connecting sequence of ether waves of appropriate order of magnitude. Röntgen has familiarized us with an order of vibrations of extreme minuteness compared with the smallest waves with which we have hitherto been acquainted, and of dimensions comparable with the distances between the centers of the atoms of which the material universe is built up; and there is no reason to suppose that we have here reached the limit of frequency. It is known that the action of thought is accompanied by certain molecular movements in the brain, and here we have physical vibrations capable, from their extreme minuteness, of acting direct on individual molecules, while their rapidity approaches that of the internal and external movements of the atoms themselves.
Confirmation of telepathic phenomena is afforded by many converging experiments and by many spontaneous occurrences only thus intelligible. The most varied proof, perhaps, is drawn from analysis of the subconscious workings of the mind, when these, whether by accident or design, are brought into conscious survey. … This is not the place for details, but the vis medicatrix thus evoked, as it were, from the depths of the organism, is of good omen for the upward evolution of mankind.
"Mathematics in Economics: Achievements, Difficulties, Perspectives," 1975