પ્રક્રિયા | ઉર્જાનો ફેરફાર (in $kJ$ ) |
$Li(s) \to Li(g)$ | $161$ |
$Li(g) \to Li^+(g)$ | $520$ |
$\frac {1}{2}F_2(g)\,\to F(g)$ | $77$ |
$F(g) + e^- \to F^-(g)$ | (ઇલેક્ટ્રોનપ્રાપ્તિ એન્થાલ્પી) |
$Li^+ (g) + F^-(g) \to LiF(s)$ | $-1047$ |
$Li (s) + \frac {1}{2}F_2(g)\to LiF(s)$ | $-617$ |
આપેલ માહિતીને આધારે ફ્લોરિનની ઇલેક્ટ્રોનિપ્રાપ્તિ એન્થાલ્પી .....$kJ\,mol^{-1}$
\({\Delta _f}{H^o} = {\Delta _{sub}}H + \frac{1}{2}{\Delta _{diss}}H + I.E. + E.A + {\Delta _{lattice}}H\)
\({\Delta _f}{H^o} = {\Delta _{sub}}H + \frac{1}{2}{\Delta _{diss}}H + I.E. + E.A + {\Delta _{lattice}}H\)
\(E.A. = - 617 + 286 = - 328\,kJ\,mo{l^{ - 1}}\)
\(\therefore \) electron affinity of fluorine
\( = - 328\,kJ\,mo{l^{ - 1}}\)
આપેલ :$\Delta_{ dis } H _{ Cl _{2(g)}}^{\circ}=240\,kJ\,mol ^{-1}$.
$\Delta_{ eg } H _{ Cl _{(g)}}^{\circ}=-350\,kJ\,mol ^{-1}$,
$\Delta_{ hyd } H _{ Cl i _{( j )}^{\circ}}^{\circ}=-380\,kJ\,mol ^{-1}$
${H_2}{O_{(g)}} + {C_{(s)}}\, \to \,\,C{O_{(g)}} + {H_{2(g)}}\,:\,\,\Delta H\, = \,\,131$ કિલોજૂલ $C{O_{(g)}} + \,\,\frac{1}{2}\,\,{O_{2(g)}} \to \,\,C{O_{2(g)}}\,:\,\,\Delta H\,\, = \,\, - 282$ કિલોજૂલ
${H_{2(g)}} + \frac{1}{2}{O_{2(g)}} \to \,{H_2}{O_{(g)}}\,:\,\Delta H\,\, = \,\, - 242\,\,$ કિલોજૂલ
$C_{(g)} + O_2$$_{(g)}$ $\to$ $CO_2$$_{(g)}$ : $\Delta H = x$ કિલોજૂલ