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Translated by Valentina Sukhanova from Russian
Step up transformer
k = U1 / U2 ,
U = E = (EL2 + ER2)1/2 = K f w F (1+Q-2)1/2
U1 = E1 = K f w1 F .
U2 = E2 = K w2 F R2 / L2
k = K f w1 F / (K w2 F R2 / L2)
k = w1 L2 f / R2 w2
![Omega Cap [Владимир Суханов]](/img/s/suhanow_w_n/transf5en/zomega.gif) .mm2/m), and for the semiconductors this value is more from 102 to 1016 times. It is understandably that the transformer with semi-conductive secondary winding can have k in 10 n of times more than the analogous transformer of traditional construction (with copper secondary winding) has. In our case n can be more than 10. Thus, k of the suggested transformer has fantastic value, for example, k = 1012. Such surprising quality of the transformer allows using it for creation of high voltages for studying of materials and substances, and also for ionization of gases (air), and also for work of accelerator of charged particles.
.mm2/m), and for the semiconductors this value is more from 102 to 1016 times. It is understandably that the transformer with semi-conductive secondary winding can have k in 10 n of times more than the analogous transformer of traditional construction (with copper secondary winding) has. In our case n can be more than 10. Thus, k of the suggested transformer has fantastic value, for example, k = 1012. Such surprising quality of the transformer allows using it for creation of high voltages for studying of materials and substances, and also for ionization of gases (air), and also for work of accelerator of charged particles. 
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