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            • 1.

              下列说法正确的是(    )

              A.某温度下纯水\(\rm{pH=6}\),则在该条件下\(\rm{pH=4}\)的醋酸和\(\rm{pH=10}\)的\(\rm{NaOH}\)中水的电离程度相同

              B.\(\rm{NH_{4}Cl}\)溶于\(\rm{D_{2}O}\)的离子方程式: \(\rm{NH\rlap{_{4}}{^{+}}+D_{2}O \overset{}{⇌} NH_{3}·D_{2}O+H^{+}}\)

              C.已知\(\rm{S}\)的燃烧热为\(\rm{Q kJ·mol^{-1}}\),则\(\rm{S(s)+ \dfrac{3}{2}O_{2}(g)═SO_{3}(g)}\) \(\rm{ΔH=-Q kJ·mol^{-1}}\)

              D.水的自偶电离方程式:\(\rm{2H_{2}O \overset{}{⇌} H_{3}O^{+}+OH^{-}}\),则液氨自偶电离方程式:\(\rm{2NH_{3} \overset{}{⇌} NH\rlap{_{4}}{^{+}}+NH\rlap{_{2}}{^{-}}}\)
            • 2.

              下列关于热化学反应的描述中正确的是\(\rm{(}\)    \(\rm{)}\)

              A.\(\rm{HCl}\)和\(\rm{NaOH}\)反应的中和热\(\rm{ΔH=-57.3kJ/mol}\),则\(\rm{H_{2}SO_{4}}\)和\(\rm{Ca(OH)_{2}}\)反应的中和热\(\rm{ΔH=2×(-57.3)kJ/mol}\)
              B.\(\rm{CO(g)}\)的燃烧热是\(\rm{283.0kJ/mol}\),则\(\rm{2CO_{2}(g)=2CO(g)+O_{2}(g)}\)反应的\(\rm{ΔH=+566.0kJ/mol}\)
              C.需要加热才能发生的反应一定是吸热反应
              D.\(\rm{1mol}\)甲烷燃烧生成气态水和二氧化碳所放出的热量是甲烷燃烧热
            • 3.

              下列说法正确的是(    )

              \(\rm{①Na}\)与\(\rm{H}\)\(\rm{{\,\!}_{2}}\)\(\rm{O}\)的反应是熵增的放热反应,该反应能自发进行

              \(\rm{②}\)对于反应\(\rm{CO(g) + H}\)\(\rm{{\,\!}_{2}}\)\(\rm{O(g)}\)\(\rm{⇌ }\) \(\rm{H}\)\(\rm{{\,\!}_{2}}\)\(\rm{(g) + CO}\)\(\rm{{\,\!}_{2}}\)\(\rm{(g) \triangle H﹤0}\),加入催化剂,改变了反应的途径,但该反应的\(\rm{\triangle H}\)也会改变

              \(\rm{③}\)甲烷的标准燃烧热为\(\rm{890.3 kJ·mol}\)\(\rm{{\,\!}^{-1}}\),则甲烷燃烧的热化学方程式可表示为:\(\rm{CH}\)\(\rm{{\,\!}_{4}}\)\(\rm{(g)+2O}\)\(\rm{{\,\!}_{2}}\)\(\rm{(g)=CO}\)\(\rm{{\,\!}_{2}}\)\(\rm{(g)+2H}\)\(\rm{{\,\!}_{2}}\)\(\rm{O(g)}\)     \(\rm{\triangle H=-890.3 kJ·mol}\)\(\rm{{\,\!}^{-1}}\)

              \(\rm{④FeCl}\)\(\rm{{\,\!}_{3}}\)和\(\rm{MnO}\)\(\rm{{\,\!}_{2}}\)均可加快\(\rm{H}\)\(\rm{{\,\!}_{2}}\)\(\rm{O}\)\(\rm{{\,\!}_{2}}\)分解,同等条件下二者对\(\rm{H}\)\(\rm{{\,\!}_{2}}\)\(\rm{O}\)\(\rm{{\,\!}_{2}}\)分解速率的改变相同

              \(\rm{⑤10 ml}\)浓度为\(\rm{1 mol/L}\)的盐酸与过量的锌粉反应,若加入少量\(\rm{CuSO}\)\(\rm{{\,\!}_{4}}\)固体,能加快反应速率但又不影响氢气生成。

              \(\rm{⑥500℃}\)、 \(\rm{30 MPa}\)下,将\(\rm{0.5 mol N}\)\(\rm{{\,\!}_{2}}\)和\(\rm{1.5 mol H}\)\(\rm{{\,\!}_{2}}\)置于密闭的容器中充分反应生成\(\rm{NH}\)\(\rm{{\,\!}_{3}}\)\(\rm{(g)}\),放热\(\rm{19.3kJ}\),其热化学方程式为:\(\rm{N}\)\(\rm{{\,\!}_{2}}\)\(\rm{+3H}\)\(\rm{{\,\!}_{2}⇌ }\)\(\rm{2NH}\)\(\rm{{\,\!}_{3}}\)  \(\rm{\triangle H < -38.6 kJ·mol}\)\(\rm{{\,\!}^{-1}}\)  

              A.\(\rm{①③④}\)     
              B.\(\rm{①⑤⑥}\)    
              C.\(\rm{②③⑥}\)     
              D.\(\rm{②④⑤}\)
            • 4.

              化学反应过程中发生物质变化的同时,常常伴有能量的变化\(\rm{.}\)这种能量的变化常以热量的形式表现出来,叫做反应热\(\rm{.}\)由于反应的情况不同,反应热可以分为许多种,如燃烧热和中和热等.

              \(\rm{(1)}\)下列\(\rm{\triangle H}\)表示物质燃烧热的是 __________;表示物质中和热的是 ________\(\rm{(}\)填“\(\rm{\triangle H_{1}}\)”、“\(\rm{\triangle H_{2}}\)”、“\(\rm{\triangle H_{3}}\)”等\(\rm{)}\).
              A.\(\rm{2H_{2}( }\)\(\rm{g}\)\(\rm{)+O_{2}(}\) \(\rm{g}\)\(\rm{)═2H_{2}O(}\) \(\rm{l}\)\(\rm{)\triangle H_{1}}\)     \(\rm{B.C( }\)\(\rm{s}\)\(\rm{)+1/2O_{2}(}\) \(\rm{g}\)\(\rm{)═CO(}\) \(\rm{g}\)\(\rm{)\triangle H_{2}}\)
              C.\(\rm{CH_{4}( }\)\(\rm{g}\)\(\rm{)+2O_{2}(}\) \(\rm{g}\)\(\rm{)═CO_{2}(}\) \(\rm{g}\)\(\rm{)+2H_{2}O(}\) \(\rm{g}\)\(\rm{)\triangle H_{3}}\) \(\rm{D.C( }\)\(\rm{s}\)\(\rm{)+O_{2}(}\) \(\rm{g}\)\(\rm{)═CO_{2}(}\) \(\rm{g}\)\(\rm{)\triangle H_{4}}\)
              E.\(\rm{C_{6}H_{12}O_{6}( }\)\(\rm{s}\)\(\rm{)+6O_{2}(}\) \(\rm{g}\)\(\rm{)═6CO_{2}(}\) \(\rm{g}\)\(\rm{)+6H_{2}O(}\) \(\rm{l}\)\(\rm{)\triangle H_{5}}\)
              F.\(\rm{N}\) \(\rm{a}\)\(\rm{OH( }\)\(\rm{aq}\)\(\rm{)+HC}\) \(\rm{l}\)\(\rm{( }\)\(\rm{aq}\)\(\rm{)═N}\) \(\rm{a}\)\(\rm{C}\) \(\rm{l}\)\(\rm{( }\)\(\rm{aq}\)\(\rm{)+H_{2}O(}\) \(\rm{l}\)\(\rm{)\triangle H_{6}}\)
              G.\(\rm{2N}\) \(\rm{a}\)\(\rm{OH( }\)\(\rm{aq}\)\(\rm{)+H_{2}SO_{4}(}\) \(\rm{aq}\)\(\rm{)═N}\) \(\rm{a}\)\(\rm{{\,\!}_{2}SO_{4}( }\)\(\rm{aq}\)\(\rm{)+2H_{2}O(}\) \(\rm{l}\)\(\rm{)\triangle H_{7}}\)
              H.\(\rm{CH_{3}COOH( }\)\(\rm{aq}\)\(\rm{)+N}\) \(\rm{a}\)\(\rm{OH( }\)\(\rm{aq}\)\(\rm{)═CH_{3}COON}\) \(\rm{a}\)\(\rm{( }\)\(\rm{aq}\)\(\rm{)+H_{2}O(}\) \(\rm{l}\)\(\rm{)\triangle H_{8}}\)
              \(\rm{(2)2.00}\) \(\rm{g}\) \(\rm{C_{2}H_{2}}\)气体完全燃烧生成液态水和\(\rm{CO_{2}}\)气体,放出\(\rm{99.6}\) \(\rm{k}\)\(\rm{J}\)的热量,写出该反应的热化学方程式 _________________________________________________________.
              \(\rm{(3)}\)充分燃烧一定量的丁烷放出的热量大小为\(\rm{Q}\),生成的\(\rm{CO_{2}}\)恰好与\(\rm{100}\) \(\rm{m}\)\(\rm{L}\)浓度为\(\rm{5}\) \(\rm{mol}\)\(\rm{⋅L^{-1}}\)的\(\rm{KOH}\)溶液完全反应生成一种正盐\(\rm{.}\)则燃烧\(\rm{1}\) \(\rm{mol}\)丁烷放出的热量为________.
            • 5. 已知下列热化学方程式:
              \(\rm{①CaCO_{3}(s)=CaO+CO_{2}(g)}\);\(\rm{\triangle H=177.7KJ}\)
              \(\rm{②C(s)+H_{2}O(s)=CO(g)+H_{2}(g)}\);\(\rm{\triangle H=-131.3KJ/mol}\)
              \(\rm{③\dfrac{1}{2}H_{2}SO_{4}(l)+NaOH(l)=\dfrac{1}{2}}\) \(\rm{Na_{2}SO_{4}(l)+H_{2}O(l)}\);\(\rm{\triangle H=-57.3KJ/mol}\)
              \(\rm{④C(s)+O_{2}(g)=CO_{2}(g)}\);\(\rm{\triangle H=-393.5KJ/mol}\)
              \(\rm{⑤CO(g)+\dfrac{1}{2}O_{2}(g)=CO_{2}(g)}\);\(\rm{\triangle H=-283KJ/mol}\)
              \(\rm{⑥HNO_{3}(aq)+NaOH(aq)=NaNO_{3}(aq)+H_{2}O(l)}\);\(\rm{\triangle H=-57.3KJ/mol}\)
              \(\rm{⑦2H_{2}(g)+O_{2}(g)=2H_{2}O(l)}\):\(\rm{\triangle H=-517.6KJ/mol}\)
              \(\rm{(1)}\)上述热学方程式中,不正确的有 _________\(\rm{(}\)填编号,下同\(\rm{)}\),不正确的理由分别是 ___________.
              \(\rm{(2)}\)根据上述信息,写出\(\rm{C}\)转化为\(\rm{CO}\)的热化学方程式 ______________________________________.
              \(\rm{(3)}\)上述反应中,表示燃烧热的热化学方程式有 __________表示中和热的热化学方程式有___________    
            • 6.

              下列推论正确的是

              A.\(\rm{S(g)+O_{2}(g)==SO_{2}(g)\triangle H_{1}}\);\(\rm{S(s)+O_{2}(g)==SO_{2}(g)\triangle H_{2}}\),则:\(\rm{\triangle H_{1} > \triangle H_{2}}\)
              B.\(\rm{C(}\)石墨,\(\rm{s)=C(}\)金刚石,\(\rm{s)\triangle H=+1.9 kJ/mol}\),则由石墨制取金刚石的反应是吸热反应,金刚石比石墨稳定
              C.\(\rm{NaOH(aq)+HCl(aq)=NaCl(aq)+H_{2}O(l)\triangle H=-57.4 kJ/mol}\),则:含\(\rm{20 gNaOH}\)的稀溶液与稀盐酸完全反应,放出的热量为\(\rm{28.7 kJ}\)
              D.\(\rm{2C(s)+O_{2}(g)=2CO(g)\triangle H=-221 kJ/mol}\),则碳的燃烧热等于\(\rm{110.5kJ/mo}\)
            • 7.

              下列热化学方程式中,\(\rm{\triangle H}\)能正确表示物质的燃烧热的是 

              A.\(\rm{CO(g) +1/2O_{2}(g) ==CO_{2}(g);\triangle H=-283.0 kJ/mol}\)
              B.\(\rm{C(s) +1/2O_{2}(g) ==CO(g);\triangle H=-110.5 kJ/mol}\)
              C.\(\rm{H_{2}(g) +1/2O_{2}(g)==H_{2}O(g);\triangle H=-241.8 kJ/mol}\)
              D.\(\rm{2C_{8}H_{18}(l) +25O_{2}(g)==16CO_{2}(g)+18H_{2}O(l);\triangle H=-11036 kJ/mol_{\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;\;}}\)
            • 8. 下列结论正确的是
              A.\(\rm{S(g)+O_{2}(g)=SO_{2}(g)}\)  \(\rm{Δ}\) \(\rm{H}\)\(\rm{{\,\!}_{1}}\);\(\rm{S(s)+O_{2}(g)=SO_{2}(g)}\)  \(\rm{Δ}\) \(\rm{H}\)\(\rm{{\,\!}_{2}}\),则\(\rm{Δ}\) \(\rm{H}\)\(\rm{{\,\!}_{1} < Δ}\) \(\rm{H}\)\(\rm{{\,\!}_{2}}\)
              B.\(\rm{C(}\)石墨,\(\rm{s)=C(}\)金刚石,\(\rm{s)}\)  \(\rm{Δ}\) \(\rm{H}\)\(\rm{=+1.9 kJ·mol^{-1}}\),则金刚石比石墨稳定
              C.\(\rm{NaOH(aq)+HCl(aq)=NaCl(aq)+H_{2}O(l)}\)  \(\rm{Δ}\) \(\rm{H}\)\(\rm{=-57.4 kJ·mol^{-1}}\),则含 \(\rm{20 gNaOH}\)的稀溶液与稀醋酸恰好完全反应,放出的热量为\(\rm{28.7 kJ}\)
              D.\(\rm{2C(s)+O_{2}(g)=2CO(g)}\)  \(\rm{Δ}\) \(\rm{H}\)\(\rm{=-221 kJ·mol^{-1}}\),则碳的燃烧热等于\(\rm{110.5 kJ·mol^{-1}}\)
            • 9.

              \(\rm{7.}\)在\(\rm{25℃}\)、\(\rm{101 kPa}\)条件下,\(\rm{C(s)}\)、\(\rm{H_{2}(g)}\)、\(\rm{CH_{3}COOH(l)}\)的燃烧热分别为\(\rm{393.5 kJ/mol}\)、\(\rm{285.8 kJ/mol}\)、\(\rm{870.3 kJ/mol}\),则\(\rm{2C(s)+2H_{2}(g)+O_{2}(g)=CH_{3}COOH(l)}\)的反应热为\(\rm{(}\)  \(\rm{)}\)

              A.\(\rm{-488.3 kJ/mol}\)   
              B.\(\rm{+488.3 kJ/mol}\)    
              C.\(\rm{-191 kJ/mol}\)     
              D.\(\rm{+191 kJ/mol}\)
            • 10.

              \(\rm{25.}\)在\(\rm{25℃}\)、\(\rm{101 kPa}\)条件下,\(\rm{C(s)}\)、\(\rm{H_{2}(g)}\)、\(\rm{CH_{3}COOH(l)}\)的燃烧热分别为\(\rm{393.5 kJ/mol}\)、\(\rm{285.8 kJ/mol}\)、\(\rm{870.3 kJ/mol}\),则\(\rm{2C(s) +2H_{2}(g) +O_{2}(g)= CH_{3}COOH(l)}\)的反应热为\(\rm{(}\)   \(\rm{)}\)

              A.\(\rm{-488.3 kJ/mol}\)    
              B.\(\rm{+488.3 kJ/mol}\)   
              C.\(\rm{-191 kJ/mol}\)   
              D.\(\rm{+191 kJ/mol}\)
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