Hi Patrikas.
Negative oxygen bubbles gather at the positive pole of a charging electric battery and positive hydrogen bubbles gather at the negative pole. What is actually happening is that the positive pole is taking the positive condition out of the water, leaving the negative oxygen as residue. The negative pole is, likewise, taking the negative condition out of the water, leaving the positive hydrogen as residue. Again like seeks like.
The outstanding demonstration of the principle of like conditions seeking like is in the elements of matter. If opposites attracted opposites according to present concepts, it would be impossible to gather together one ounce of the same elements. All elements seek their kind. In any chemical decomposition of compounded mixtures, each element seeks and finds similarly conditioned elements--preferentially "identical".
Nature's gyroscopic principle does this automatically. Every element has its own gyroscopic relation to the axis and amplitude of its wave. Each seeks that relation of pressure and moves until it finds itself in the orbit of its own gyroscopic plane of pressure.
Negative oxygen bubbles gather at the positive pole of a charging electric battery and positive hydrogen bubbles gather at the negative pole. What is actually happening is that the positive pole is taking the positive condition out of the water, leaving the negative oxygen as residue. The negative pole is, likewise, taking the negative condition out of the water, leaving the positive hydrogen as residue. Again like seeks like.
The outstanding demonstration of the principle of like conditions seeking like is in the elements of matter. If opposites attracted opposites according to present concepts, it would be impossible to gather together one ounce of the same elements. All elements seek their kind. In any chemical decomposition of compounded mixtures, each element seeks and finds similarly conditioned elements--preferentially "identical".
Nature's gyroscopic principle does this automatically. Every element has its own gyroscopic relation to the axis and amplitude of its wave. Each seeks that relation of pressure and moves until it finds itself in the orbit of its own gyroscopic plane of pressure.
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