
British physicist (1856-1940)
Missing: 4, 7, 9. Present digits repeat to show how many times they occur.
Five sits at the centre of the Lo Shu grid and at the middle of 1–9, and the tradition makes much of that: it is the number of movement, appetite and change. Practitioners associate it with travel, reinvention and an unusually high tolerance for uncertainty. The reading is equally direct about the cost — 5 is described as leaving at the point where things get repetitive, which is often the point just before they would have paid off.
A complete line in the grid.
A complete line in the grid.
A complete line in the grid.
A complete line in the grid.
Concentrated self-direction. Read as conviction that does not need external agreement — and does not always seek it.
Read as impatience with structure and maintenance. Associated with starting well and leaving the scaffolding to someone else.
Read as reluctance to sit with an unresolved question. Associated with wanting the working answer rather than the true one.
Read as a narrowed field of view: strong loyalty close in, less pull from causes further out.
Moolank 9 comes from the day of the month alone; Bhagyank 5 from the whole date. They differ, which is the ordinary case — the two numbers answer different questions.
Mars. Force, conflict, courage, blood. Read as energy that must be aimed at something.
Bhagyank uses the same arithmetic as the Western life path, so the two will always agree. That is not two traditions confirming each other — it is one calculation under two names.
The difficulties which would have to be overcome to make several of the preceding experiments conclusive are so great as to be almost insurmountable.
As the cathode rays carry a charge of negative electricity, are deflected by an electrostatic force as if they were negatively electrified, and are acted on by a magnetic force in just the way in which this force would act on a negatively electrified body moving along the path of these rays, I can see no escape from the conclusion that they are charges of negative electricity carried by particles of matter.
If, in the very intense electric field in the neighbourhood of the cathode, the molecules of the gas are dissociated and are split up, not into the ordinary chemical atoms, but into these primordial atoms, which we shall for brevity call corpuscles; and if these corpuscles are charged with electricity and projected from the cathode by the electric field, they would behave exactly like the cathode rays.
The discovery by Monsieur and Madame Curie that a sample of radium gives out sufficient energy to melt half its weight of ice per hour has attracted attention to the question of the source from which the radium derives the energy necessary to maintain the radiation; this problem has been before us ever since the original discovery by Becquerel of the radiation from uranium.
I have described at some length the application of Positive Rays to chemical analysis; one of the main reasons for writing this book was the hope that it might induce others, and especially chemists, to try this method of analysis. I feel sure that there are many problems in chemistry, which could be solved with far greater ease by this than any other method. The method is surprisingly sensitive — more so than even that of spectrum analysis, requires an infinitesimal amount of material, and does not require this to be specially purified; the technique is not difficult if appliances for producing high vacua are available.
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