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Interpretation:
The oxides which are
Concept Introduction:
A property of a substance known as solute whether it is solid, liquid, or gaseous to get dissolved in the solid, liquid or gaseous solvent is known as solubility.
When two or more solid chemical substances are dissolved in each other and only one phase appears after mixing irrespective of any concentration of the solute in the solvent, then there is unlimited solid solubility.
In alloying, the electrical conductivity of the alloy is dependent on the difference in the size of its constituent elements. Less is the difference in the sizes of the elements, higher is the electrical conductivity of the alloy which means, less is the reduction in the electrical conductivity of an alloy.
Hume-Rothery rules are the conditions which are to be satisfied to attain unlimited solid solubility. These rules are stated as:
1. The size of the atoms or the ions involved should be similar to minimize the lattice strain. This means that there should not be more than
2. The crystal structure of both the materials should be same to avoid different structure caused due to the transition from one phase to another phase at some point.
3. The difference in the valency of the ions causes the formation of compounds rather than solutions. Tus, the valence of the ions must be same.
4. the significant difference in the electronegativity (affinity for electrons) caused the compound formation rather than solutions. Therefore, the electronegativity of atoms must be approximately same.
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Chapter 10 Solutions
Essentials Of Materials Science And Engineering
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- A piston–cylinder device contains 3 kg of nitrogen initially at 100 kPa and 25°C. Nitrogen is now compressed slowly in a polytropic process during which PV1.3 = constant until the volume is reduced by one-half. Determine the work done and the heat transfer for this process. The gas constant of N2 is R = 0.2968 kPa·m3/kg·K. The cv value of N2 at the anticipated average temperature of 350 K is 0.744 kJ/kg·K (Table A-2b). The work done for this process is kJ. The heat transfer for this process is kJ.arrow_forwardI tried solving this one but I have no idea where I went wrong can you please help me out with this?arrow_forwarda. An average hole drift velocity of 103 cm/sec results when 2V is applied across a 1 cm long semiconductor bar. What is the hole mobility inside the bar? b. Name the two dominant carrier scattering mechanisms in nondegeneratedly doped semiconductors of device quality. c. For a give semiconductor the carrier mobilities in intrinsic material are (choose one: higher than, lower than, the same as) those in heavily doped material. Briefly explain why the mobilites in intrinsic material are (chosen answer) those in heavily doped material.arrow_forward
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