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[00:00.00]作词:化学之国、SarikaPatanawat
以下歌词翻译由微信翻译+文曲大模型提供 [00:00.09]作曲:化学之国 [00:00.18]When I was talking about molecules with that little elephant
当我和那只小象谈论分子时 [00:04.23]I mentioned the force between molecules
我提到过分子之间的力 [00:06.81]Its definition is explained in this way
它的定义是这样解释的 [00:10.14]Can be understood as the energy of covalent bonds
可以理解为共价键的能量 [00:13.26]Van der Waals force is a general term for molecular force
范德瓦尔斯力是分子力的泛称 [00:19.17]The most common is London dispersion force
最常见的是伦敦弥散力 [00:21.69]If this molecule contains the property of polarity
如果这种分子具有极性 [00:25.14]It means that the covalent bond between them is polarized
这意味着它们之间的共价键两极分化 [00:30.45]The most special molecular force is hydrogen bonding
最特殊的分子力是成键的 [00:34.17]It contains hydrogen nitrogen oxygen and fluorine
它含有氢氮氧和氟 [00:38.04]Because the last three have strong electronegativity
因为后三者电负性强 [00:41.22]It also creates a strong attraction between molecules
它也会在分子间产生强烈的引力 [00:45.66]Molecular force is defined as the energy of covalent bond
分子力的定义是共价键的能量 [00:50.16]They are divided into London dispersion force and dipole
它们分为伦敦弥散力和偶极 [00:55.14]Hydrogen bond is the strongest molecular force of van der Waals force
最强大的分子力是一个键 [00:59.73]But remember that hydrogen bonds are not chemical bonds
但是要记住,氢原子键不是化学键 [01:04.73]When I heard the little elephant ask about the shape of molecules
当我听到小象问分子的形状时 [01:08.28]This reminds me of orbital hybridization
这让我想起轨道杂化 [01:12.93]It all depends on the bonding amount of the central atom
取决于中心原子的成键量 [01:18.36]Don't forget the number of lone pair electrons
不要忘记孤对电子的数量 [01:23.10]The shape of molecules can determine polarity
分子的形状可以决定分子的极性 [01:28.14]The factors also include lone pair electrons
这些因素还包括孤对电子 [01:33.18]Because they can make the resultant force not zero
因为它们可以使合力不为零 [01:37.95]This can be deduced from the asymmetry of molecules
这可以从分子的不对称性推断出来 [01:43.77]Molecular force is defined as the energy of covalent bond
分子力的定义是共价键的能量 [01:48.24]They are divided into London dispersion force and dipole
它们分为伦敦弥散力和偶极 [01:53.25]Hydrogen bond is the strongest molecular force of van der Waals force
最强大的分子力是一个键 [01:58.44]But remember that hydrogen bonds are not chemical bonds
但是要记住,氢原子键不是化学键 [02:25.00]
以下歌词翻译由微信翻译+文曲大模型提供 [00:00.09]作曲:化学之国 [00:00.18]When I was talking about molecules with that little elephant
当我和那只小象谈论分子时 [00:04.23]I mentioned the force between molecules
我提到过分子之间的力 [00:06.81]Its definition is explained in this way
它的定义是这样解释的 [00:10.14]Can be understood as the energy of covalent bonds
可以理解为共价键的能量 [00:13.26]Van der Waals force is a general term for molecular force
范德瓦尔斯力是分子力的泛称 [00:19.17]The most common is London dispersion force
最常见的是伦敦弥散力 [00:21.69]If this molecule contains the property of polarity
如果这种分子具有极性 [00:25.14]It means that the covalent bond between them is polarized
这意味着它们之间的共价键两极分化 [00:30.45]The most special molecular force is hydrogen bonding
最特殊的分子力是成键的 [00:34.17]It contains hydrogen nitrogen oxygen and fluorine
它含有氢氮氧和氟 [00:38.04]Because the last three have strong electronegativity
因为后三者电负性强 [00:41.22]It also creates a strong attraction between molecules
它也会在分子间产生强烈的引力 [00:45.66]Molecular force is defined as the energy of covalent bond
分子力的定义是共价键的能量 [00:50.16]They are divided into London dispersion force and dipole
它们分为伦敦弥散力和偶极 [00:55.14]Hydrogen bond is the strongest molecular force of van der Waals force
最强大的分子力是一个键 [00:59.73]But remember that hydrogen bonds are not chemical bonds
但是要记住,氢原子键不是化学键 [01:04.73]When I heard the little elephant ask about the shape of molecules
当我听到小象问分子的形状时 [01:08.28]This reminds me of orbital hybridization
这让我想起轨道杂化 [01:12.93]It all depends on the bonding amount of the central atom
取决于中心原子的成键量 [01:18.36]Don't forget the number of lone pair electrons
不要忘记孤对电子的数量 [01:23.10]The shape of molecules can determine polarity
分子的形状可以决定分子的极性 [01:28.14]The factors also include lone pair electrons
这些因素还包括孤对电子 [01:33.18]Because they can make the resultant force not zero
因为它们可以使合力不为零 [01:37.95]This can be deduced from the asymmetry of molecules
这可以从分子的不对称性推断出来 [01:43.77]Molecular force is defined as the energy of covalent bond
分子力的定义是共价键的能量 [01:48.24]They are divided into London dispersion force and dipole
它们分为伦敦弥散力和偶极 [01:53.25]Hydrogen bond is the strongest molecular force of van der Waals force
最强大的分子力是一个键 [01:58.44]But remember that hydrogen bonds are not chemical bonds
但是要记住,氢原子键不是化学键 [02:25.00]
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