) Silanone (SİH2O) and silanol (SIH3OH) are species believed to be important in the oxidation of silane (SiH4). These species are much more elusive than their carbon counterparts. The following standard enthalpies of formation have been reported in the past: SiH2O = - 98.3 kJ mol-, SIH3OH =- 282 kJ mol-, SiH4 = 34.3 kJ mol-, and H2O = -285.83 kJ mol-. Compute the standard enthalpy of reaction when (a) silane reacts with oxygen to form silanol and when (b) silane reacts with oxygen to form silanone. %3D
) Silanone (SİH2O) and silanol (SIH3OH) are species believed to be important in the oxidation of silane (SiH4). These species are much more elusive than their carbon counterparts. The following standard enthalpies of formation have been reported in the past: SiH2O = - 98.3 kJ mol-, SIH3OH =- 282 kJ mol-, SiH4 = 34.3 kJ mol-, and H2O = -285.83 kJ mol-. Compute the standard enthalpy of reaction when (a) silane reacts with oxygen to form silanol and when (b) silane reacts with oxygen to form silanone. %3D
Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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Transcribed Image Text:») Silanone (SİH2O) and silanol (SİH3OH) are species believed to be important in
the oxidation of silane (SIH4). These species are much more elusive than their carbon
counterparts. The following standard enthalpies of formation have been reported in the
past: SiH2O = - 98.3 kJ mol-1, SIH3OH = - 282 kJ mol-1, SiH4 = 34.3 kJ mol-1, and H2O
= -285.83 kJ mol·'. Compute the standard enthalpy of reaction when (a) silane reacts with
oxygen to form silanol and when (b) silane reacts with oxygen to form silanone.
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