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작성자 Marko 작성일24-09-12 00:18

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This is why the MOSFET circuit shown in column B is always a bad idea, what are electric cables too. Why is this useful? In short, a deep signal is slowly cumulating that, when it emerges, will order the dedifferentiation of the affected cell back down the evolutionary road toward the anaerobe. Relying on this intrinsic gain is usually not a good idea for production-grade circuits, as the parameter can change significantly at a whim - but by looking at its general order of magnitude, you can see what input impedance would be appropriate. While many types of highly integrated digital circuits, such as microcontrollers, are extremely complex, their functionality is generally implemented using these basic devices - and can be easily analyzed as such. Oscillators: many types of ICs are used as timers (one-shot operation) or oscillators (continuous, astable operation); perhaps the most famous member of this family is 555, a very versatile pulse and square / sawtooth wave generator that can be controlled over a wide range of frequencies with an external capacitor and two resistors.



If a balanced transmission line (such as twinlead) is connected directly to an unbalanced line (such as coaxial cable) the two lines become a long-wire antenna, which is undesirable for VHF and UHF. The second circuit - a bridge or full-wave rectifier - is a bit more clever, but also easy to follow: opposing pairs of diodes are used to select the more positive or negative out of two input leads, and always produce a particular output polarity. Finally, photoresistors are monolithic semiconductors where a higher number of photon-induced charge carriers promotes conduction; compared to photodiodes, they are much slower, but have other favorable characteristics, such as a very broad sensitivity range. Indeed, chemistry is largely due to electric charge and charge distribution anyway. It does, however, need bipolar switching: if you simply apply a positive voltage to the gate, and then disconnect it - the gate-source "capacitor" will stay charged, and the transistor will continue conducting for a longer while (dependent on humidity, handling, etc); even after this charge disappears, a new one can be easily accumulated due to further handling, parasitic coupling, and so forth. There are uses where this arrangement makes sense - but switching is not one of them.

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In the recent Gulf War, many Americans were suddenly thrust into one of the densest EM signals environment in history. At this point the tumor becomes an independent cellular organism, living in an environment where its body host continues to furnish its food and oxygen, and its host’s immune system cells do not recognize the altered cells as foreigners to be attacked and destroyed. Those dedifferentiated cells become independent cells or a small independent cell­groupings. If a cell (or group of cells) has separated from this centralized EM control, but is still living and functioning, then obviously the cell is no longer under the whole organism’s MCCS and personal quantum potential. Think of it this way: In a living body, each cell is already a single, independent, living creature all its own. This results in metastasis, the spread of the cancer to other sites in the body, where they continue to be recognized as "self" by the immune system cells and continue to be supplied with oxygen and nutrients for continued growth. Even single-signal EM radiation still forms oppositive pairings with the weak fields already existing in the body, thus also forming W/Z structured potentials. A conglomerate of H-bond structures in an area or a volume can be considered an H-bond potential, since the gradient oppositions sum to produce stress potentials.



Thus in the H-bonding fluid surrounding the hemoglobin molecule, there exists an H-bond scalar potential, and by Whittaker/Ziolkowski (W/Z) decomposition it has a multi-wave structure. Consequently there is no "large organism" central control of the tumor’s growth, and the tumor cells divide and multiply apace. Resistors with low values (100Ω or so) usually perform as expected to 500 MHz or so; that said, large resistors - such as 1 MΩ - exist to admit only tiny currents, so their performance is easily thrown off by even fairly minutiae parasitic effects. Thus even the "chemical" contaminants interact electrically and via potential (multiwave) interferometry with the H-bonding potential. The denser the external environment, the greater is the interferometry and the interference with the hydrogen-bonding augmentation of oxygen transport. Thus contamination of the internal blood fluid by chemicals, agricultural pesticides, smoke, etc. directly and dramatically lower the oxygen availability to the body’s cells, resulting in a continuing "oxygen hungry" state (hypoxia) in most of the body’s cells. The result is an immediate and dramatic reduction of the oxygen-transport capability of all the hemoglobin in the red cells as they pass through the contaminated lungs and are exposed to fluid contamination. DC Block - Some splitters will pass DC through all 3 legs.

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