- 《普通化学》习题解析
- 高松
- 1228字
- 2024-11-05 01:12:57
习题解析
3.1 在100kPa和80.1℃下,1mol苯全部气化时需吸收30.5KJ的热量,计算2mol苯气化时内能增加多少。
解 苯的气化反应:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0032_0096.jpg?sign=1739489664-dUNOZ5lmx6D5BFPJ8wfT5F8eDPF4QZkd-0-9451d81de8b505bc68cff278c5be6688)
体积功:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0032_0097.jpg?sign=1739489664-Wiqg7gIV4EayM2FEYvCfsG2I5LyO8Ak6-0-8be07bd938a7134eca27bb74407c263f)
3.2 25.0g硝酸甘油(C3H5(NO3)3)(l)分解成N2(g)、O2(g)、CO2(g)、H2O(l)时放热199KJ。
(1)写出该反应的化学方程式;
(2)计算1mol硝酸甘油分解的ΔH;
(3)分解过程中生成1molCO2(g)放出的热量是多少?
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0032_0098.jpg?sign=1739489664-tKob4KBR2aP4jFANLYS5flNKbmHGGlQ2-0-4ccf9f0df0376e109b5a0fc25eaf726c)
3.3 已知下列变化。
,在0~100℃之间水的平均比热为4.184 J·g-1·℃-1。计算1.00mol冰在100kPa条件下,全部转变成100℃水蒸气时的ΔU和
。
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0033_0103.jpg?sign=1739489664-ClIiTO9OZ853uw4uaYvQOw8NqqB5Rycb-0-19d4ce5f594e4dc2f1dffdb0a6f1af92)
因此
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0033_0104.jpg?sign=1739489664-tHyO2AlyywRWHqTx7Xkzm240MlKPAJdq-0-6b66da21e524f51624b62fe6e5aef70e)
3.4 已知
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0033_0105.jpg?sign=1739489664-ygHM3VhEOMrTsTzYcnjgnuGw3dhzHTx0-0-1919823da8aa9ae124a90cba7117ee2f)
实验测定。假定苯是由三个
和三个C-C键组成,根据附录A.1中数据估算C6H6(g)的标准生成焓,计算结果说明了什么?
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0033_0108.jpg?sign=1739489664-anaTj0pMC3TfcTow9TlKyBjVLhowgllU-0-17dd10d57f9415eac388d9de8498e70d)
实验测定的与计算结果有较大出入,说明C6H6并不是由三个
双键和三个C-C单键组成。
3.5 已知下列反应的焓变:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0033_0111.jpg?sign=1739489664-zdUT7YLdGKxJQ46eW60AetO2p2zBYNNJ-0-6a2087333c26642c9c21fca4eba139cf)
计算CH3COOCH3(l,乙酸甲酯)的标准生成焓。
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0033_0112.jpg?sign=1739489664-lYTh25sxcBve0IGVkvVYW3WwTN5VI4IA-0-def33d2ddd07344d4d14e543ba210dce)
3.6 已知下列热化学方程式:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0034_0113.jpg?sign=1739489664-Gxi12fVktFphqUfo7wFgJKp942eluJd0-0-e6fdcffa4b122ed7fb6a186b332501cb)
计算N2(g)、O2(g)和NO(g)的键焓。
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0034_0114.jpg?sign=1739489664-NoRWeg2qUB1ybFEx6ndWfmisFEfBJ3JY-0-13e07f200f1fc91aa3110f1c9ee54da6)
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0034_0115.jpg?sign=1739489664-GqUucldgNLO0iTRXjThPxJym2AiQtji2-0-07e456b6c5ac28cb845e8697f12e4dbe)
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0034_0116.jpg?sign=1739489664-MWo39jNynbnHQG5mQle5T2RemnoHwLGx-0-fac5d25b748291d137703b42c7a3252e)
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0034_0117.jpg?sign=1739489664-elZJ3UKrDabJecl5UIVBdbsYygIGFo6Z-0-2fea29e0c41f232c0163753a17cec33d)
反应(4)×2-(2)+(3)×2为下述反应:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0034_0118.jpg?sign=1739489664-xbgcJNTXV8WWVG5iFvjUhtLVCmBfXWkN-0-4d80ad60eaf7f8672aff95f06ffb399b)
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0034_0119.jpg?sign=1739489664-nQUBEpDIHwhkmqAe1T2VztDUI2Tgp89K-0-f534bbc358e37caa163a465261cd9051)
解 298K、标态下键焓数据如下:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0034_0120.jpg?sign=1739489664-U5VSDsVRrIW4p73JDcFxBLC7lIlxJylo-0-39fbaeb2ba85049a7f318af793b631a1)
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0035_0121.jpg?sign=1739489664-RgVbl2nN8ntj1l3BzxUoIMEBbknMk04d-0-7ba8d89a5647e81b496fee683ec5aef2)
3.9 SO3的分解反应为:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0035_0122.jpg?sign=1739489664-2ttzfAZTa48rITjjF8lehqgfF1lY9FFz-0-8daee84d0e570e3e9f2a70376f9593ea)
(1)计算25℃的,说明反应能否自发进行;
(2)计算1.00gSO3在此条件下分解时的;
(3)估计该反应的符号;
(4)计算标准状态下分解反应自发进行的温度。
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0035_0126.jpg?sign=1739489664-SCTJOL0FVK4n7iAEsPrxqtslfMrSqNIC-0-c339abe0cdc84eb8fb736fb3eb7750f3)
3.10 AgNO3的分解反应为:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0035_0127.jpg?sign=1739489664-CH54uKGGGehoGhyFEmgiqCmGpLc8B0I6-0-cc7cb5b41c53f14b01461df127365ad5)
(1)计算标准状态下AgNO3(s)分解的温度;
(2)防止AgNO3(s)分解应采取什么措施?
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0035_0128.jpg?sign=1739489664-mlz8fTsQtHabiBMDbCuarDWFeJn0bpqV-0-1581a4b40f883e457b9ee3e5bdec1db9)
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0036_0129.jpg?sign=1739489664-gnBxw309FnC0GCSrgbJ6B9nSIyFBULPV-0-087b8e76365da21fbd64dcb464c69d99)
(2)低温、避光保存。
3.11 Fe2O3还原为铁有以下两种途径:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0036_0130.jpg?sign=1739489664-9NSqmQcnlp1j2KWxhGC3Ztj0FCpLEtL3-0-09a0fec17e22a07f6f4842489c47d07e)
通过计算说明哪个反应可在较低温度下进行。
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0036_0131.jpg?sign=1739489664-Jv3Lk7QIFqpr8EmtCoTOqD642LXziQ1u-0-8f3135f016aa0701ac5bb4aad41b0a16)
3.12 计算说明在标准状态及25℃时能否用甲烷和苯合成甲苯。若温度升至500℃,反应情况又如何?
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0036_0132.jpg?sign=1739489664-HKvlpz9SAoKM9qkRhnUMfvVEKlbiCawA-0-b63be5af8393b750357460610aacc0c2)
,故
在任何温度下均大于0,所以在标态、25℃,该反应不能发生。温度升至任何值,该反应均不能发生。
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0037_0135.jpg?sign=1739489664-ROITXvsaqf5wH2tPpPvoBGoP6TKEQ7Un-0-d84fcc6cf89dfa85fbb7b4d93ef7db9e)
单斜硫和正交硫的分别为32.6 J·mol-1·K-1和31.8 J·mol-1·K-1。
(1)计算说明在标准状态下,当温度为25℃及120℃时,哪种晶型更稳定。
(2)两种晶型的转变温度为多少?
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0037_0137.jpg?sign=1739489664-e4rSz2Gfv6PKriDXKphiimacrgUFAmvR-0-dcb665efbcb57f569adab3f545a462a0)
3.14 计算说明在标态下,下述各反应能自发进行的温度:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0037_0138.jpg?sign=1739489664-NGorKlltR0JBw75OwNw76Xew8W3iAu4a-0-264762f6519a38715d3444bbc7dfad56)
3.15 下述两反应被建议用于火箭推进:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0038_0139.jpg?sign=1739489664-JmMd7975pMIoOTetC5zZwDui4UwOmod3-0-60b0542c3bac4a73351f161ffd3678cb)
在25℃及100kPa,每个反应的每克总反应物能得到多少最大有用功?压力不变温度升至1000℃时,又能取得多少最大有用功?
解 25℃时
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0038_0140.jpg?sign=1739489664-kfeg4uQ8GNzVbCx1is21uAwsRf2yTzNh-0-ce0fd41f8250bc623457a2e606770333)
每克反应物得到的最大有用功:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0038_0141.jpg?sign=1739489664-zI8jExPxWj3uJ0uJX2s0GY4ilV40HaJo-0-af5fdf8cc811acac0cfb8a54c980ff73)
每克反应物得到的最大有用功:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0038_0142.jpg?sign=1739489664-RCYdc3bZ84njDxnLqiZdOFwhHyLGi9uM-0-0f814ca0ad0808198d90b300682663f6)
1000℃时
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0038_0143.jpg?sign=1739489664-X0nACd1fDEV4x7N2AJisgkwUDHlJWRRz-0-cef8037b22eb16c43f59072fb72e0ecb)
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0039_0144.jpg?sign=1739489664-tlkguBtM7XWHHi3hVu6GN49VU2nXlp6d-0-fb772a5011faae02bbdecc46b23aa6a6)
3.16 糖在新陈代谢中发生如下反应:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0039_0145.jpg?sign=1739489664-jtXWYw5x54EkvcG1j77gAaofw2jHtse5-0-5be5ea71a6cc769f8efc0d992b03ecdf)
已知反应的和
分别为-5650KJ·mol-1和-5790KJ·mol-1。
(1)假设只有30.0%的Gibbs自由能变转变为非体积功(有用功),将10.0g糖在37℃时进行新陈代谢,可以得到多少非体积功?
(2)体重为60.0Kg的人,吃0.25Kg糖获得的能量能使其登上高度为多少千米的山?
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0040_0148.jpg?sign=1739489664-mZHfVbLmAE4qXyIOcdlb8dYgsmg9Dw4B-0-9ef62909795820b154a20c5adad6ab78)
3.17 室温下暴露在空气中的金属铜,表面逐渐覆盖一层黑色氧化铜;将金属铜加热到一定温度,黑色氧化铜转变为红棕色氧化亚铜;在更高温度下,氧化物覆盖层逐渐消失。写出上述变化过程的反应式,并估算标态下后两个反应的温度。
解 发生的反应:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0040_0149.jpg?sign=1739489664-1LAcyZxeoemDpa6vP58rDh4B72J5LmQM-0-bd0dc96ef65043ee98f1504a10241b65)
3.18 已知C6H5NH2(l)的。利用热力学数据判断,在标态下下列用苯制取苯胺的方法中哪个是可行的:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0041_0151.jpg?sign=1739489664-PpULTdGKDSu3w1YffrKhww1joWTxLKeU-0-b5ed5f515bedff8c2ea52191a1ae1059)
反应(1),(2)均是可行的,反应(1)比反应(2)更好。
3.19 已知70℃和80℃时,CCl4的饱和蒸气压分别是8.25bar和11.2bar。又知:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0041_0152.jpg?sign=1739489664-CHLQPayZsK8luJwBQ6s82MzLJYLYQpCd-0-d2c8426b78085102229432b994a1b8ed)
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0041_0153.jpg?sign=1739489664-L1bE6VxEy2sreRIhfKNyEKNw35Nc0nwY-0-414ba487d8250fa20eb6df3f62bd1313)
解 写出反应式:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0041_0154.jpg?sign=1739489664-G5qLfAmz0PkdyxaYiv0P6O0Dnnc57dCf-0-8991d32d047eeb901d0e3d5640ace449)
先求反应(1)的ΔHvap:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0041_0155.jpg?sign=1739489664-mtev6ikJdU19tEN0E1AQd0L7S0cJf8xJ-0-0284fefee3a9ee861ad09a9e8f39f2ca)
再用键焓求反应(2)的焓变ΔH2:
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0041_0156.jpg?sign=1739489664-2ogX6bayo3WC5oEiDb6b5X9VSJ2WC4fu-0-4f0ed8f849f9a4fc894efc708c964d6d)
则反应(3)的焓变ΔH3为
![](https://epubservercos.yuewen.com/819D6D/15279425205159606/epubprivate/OEBPS/Images/figure_0041_0157.jpg?sign=1739489664-WPcwbJGtdj429QblayF8guElX7DDxF1W-0-eb6a8b1351614075ccf4619140a2a1fe)