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S G Gevorkian

Publications and source records attributed to S G Gevorkian.

6 recordsLinked to original sources

Mechanical properties of DNA films.

The Young's dynamical modulus (E) and the DNA film logarithmic decrement (theta) at frequencies from 50 Hz to 20 kHz are measured. These values are investigated as functions of the degree of hydration and temperature. Isotherms of DNA film hydration at 25 degrees C are measured. The process of film hydration changing with temperature is studied. It is shown that the Young's modulus for wet DNA films (E = 0.02-0.025 GN m-2) strongly increases with decreasing hydration and makes E = 0.5-0.7 GN m-2. Dependence of E on hydration is of a complex character. Young's modulus of denatured DNA films is larger than that of native ones. All peculiarities of changing of E and theta of native DNA films (observed at variation of hydration) vanish in the case of denatured ones. The native and denatured DNA films isotherms are different and depend on the technique of denaturation. The Young's modulus of DNA films containing greater than 1 g H2O/g dry DNA is found to decrease with increasing temperature, undergoing a number of step-like changes accompanied by changes in the film hydration. At low water content (less than 0.3 g H2O/g dry DNA), changing of E with increasing temperature takes place smoothly. The denaturation temperature is a function of the water content.

Animals↗

[Relation between the lysozyme hydration isotherm and molecule packing in the solid phase].

A micromethod for measurement of mass changes of glutaraldehyde treated protein crystals is presented. The method is based on analysis of transverse resonance vibration of a cantilevered tungsten micro-needle (1,5 divided by 2 mm long, 30 divided by 40 mkm in diameter) having the specimen stuck on its free sharp end. The method is accurate to within 0.1% for specimens with masses 0.1 divided by 0.01 mg. Absorption isotherms for water uptake by triclinic (P1), monoclinic (P2(1) ) and tetragonal (P4(3)2(1)2) crystals as well as by amorphous films of hen egg-white lysozyme are obtained. Hydration of lysozyme molecule is shown to be highly dependent on molecular packing in the sample both at low and high relative humidities.

Biophysical Phenomena↗