You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

588 lines
33 KiB

4 weeks ago
<?xml version='1.0' encoding='utf-8'?>
<graphml xmlns="http://graphml.graphdrawing.org/xmlns" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://graphml.graphdrawing.org/xmlns http://graphml.graphdrawing.org/xmlns/1.0/graphml.xsd">
<key id="d11" for="edge" attr.name="created_at" attr.type="long" />
<key id="d10" for="edge" attr.name="file_path" attr.type="string" />
<key id="d9" for="edge" attr.name="source_id" attr.type="string" />
<key id="d8" for="edge" attr.name="keywords" attr.type="string" />
<key id="d7" for="edge" attr.name="description" attr.type="string" />
<key id="d6" for="edge" attr.name="weight" attr.type="double" />
<key id="d5" for="node" attr.name="created_at" attr.type="long" />
<key id="d4" for="node" attr.name="file_path" attr.type="string" />
<key id="d3" for="node" attr.name="source_id" attr.type="string" />
<key id="d2" for="node" attr.name="description" attr.type="string" />
<key id="d1" for="node" attr.name="entity_type" attr.type="string" />
<key id="d0" for="node" attr.name="entity_id" attr.type="string" />
<graph edgedefault="undirected">
<node id="氢气">
<data key="d0">氢气</data>
<data key="d1">category</data>
<data key="d2">Hydrogen is a chemical element that reacts with oxygen to form water.</data>
<data key="d3">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849568</data>
</node>
<node id="氧气">
<data key="d0">氧气</data>
<data key="d1">category</data>
<data key="d2">Oxygen is a chemical element that reacts with hydrogen to form water.</data>
<data key="d3">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849568</data>
</node>
<node id="化学反应">
<data key="d0">化学反应</data>
<data key="d1">event</data>
<data key="d2">A chemical reaction between hydrogen and oxygen produces water.</data>
<data key="d3">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849568</data>
</node>
<node id="水">
<data key="d0">水</data>
<data key="d1">category</data>
<data key="d2">Water is the chemical compound formed when hydrogen and oxygen react, essential for all known forms of life.</data>
<data key="d3">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849568</data>
</node>
<node id="化学方程式">
<data key="d0">化学方程式</data>
<data key="d1">category</data>
<data key="d2">A chemical equation is a symbolic representation of a chemical reaction using chemical formulas.</data>
<data key="d3">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849568</data>
</node>
<node id="equation_3e2febd255460eebaac47f32f675fafe">
<data key="d0">equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d1">equation</data>
<data key="d2">```json
{
"detailed_description": "The equation $$2 H _ { 2 } + O _ { 2 } = 2 H _ { 2 } O$$ repr...</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849593</data>
</node>
<node id="Hydrogen-Oxygen Combustion Equation">
<data key="d0">Hydrogen-Oxygen Combustion Equation</data>
<data key="d1">category</data>
<data key="d2">This balanced chemical equation represents the combustion of hydrogen and oxygen to form water, adhering to mass conservation. It is foundational in chemistry, with applications in energy production and education.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Hydrogen (H₂)">
<data key="d0">Hydrogen (H₂)</data>
<data key="d1">category</data>
<data key="d2">Diatomic hydrogen molecule, a reactant in the combustion equation, fundamental in chemical reactions and energy studies.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Oxygen (O₂)">
<data key="d0">Oxygen (O₂)</data>
<data key="d1">category</data>
<data key="d2">Diatomic oxygen molecule, a reactant in the combustion equation, essential for combustion and respiration processes.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Water (H₂O)">
<data key="d0">Water (H₂O)</data>
<data key="d1">category</data>
<data key="d2">The product of the combustion equation, a vital molecule for life and industrial applications.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Stoichiometry">
<data key="d0">Stoichiometry</data>
<data key="d1">category</data>
<data key="d2">The mathematical relationship between reactants and products in a chemical reaction, exemplified by the combustion equation.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Thermodynamics">
<data key="d0">Thermodynamics</data>
<data key="d1">category</data>
<data key="d2">The study of energy changes in reactions, relevant to the exothermic nature of the combustion equation.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Hydrogen Fuel Technology">
<data key="d0">Hydrogen Fuel Technology</data>
<data key="d1">category</data>
<data key="d2">An application of the combustion equation, focusing on clean energy production.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Mathematical Equation Analysis">
<data key="d0">Mathematical Equation Analysis</data>
<data key="d1">category</data>
<data key="d2">The process of analyzing and interpreting mathematical equations, particularly chemical reactions, to understand their components and implications.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Latex Format">
<data key="d0">Latex Format</data>
<data key="d1">category</data>
<data key="d2">A document preparation system used for formatting mathematical equations and scientific notations.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Balanced Chemical Reaction">
<data key="d0">Balanced Chemical Reaction</data>
<data key="d1">category</data>
<data key="d2">A chemical equation where the number of atoms for each element is equal on both sides, adhering to the law of conservation of mass.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Law of Conservation of Mass">
<data key="d0">Law of Conservation of Mass</data>
<data key="d1">category</data>
<data key="d2">A fundamental principle in chemistry stating that mass is neither created nor destroyed in a chemical reaction.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Stoichiometric Coefficients">
<data key="d0">Stoichiometric Coefficients</data>
<data key="d1">category</data>
<data key="d2">Numerical values in a chemical equation that indicate the molar ratios of reactants and products.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Avogadro's Law">
<data key="d0">Avogadro's Law</data>
<data key="d1">category</data>
<data key="d2">A principle stating that equal volumes of gases at the same temperature and pressure contain equal numbers of molecules.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Hess's Law">
<data key="d0">Hess's Law</data>
<data key="d1">category</data>
<data key="d2">A law in thermodynamics stating that the enthalpy change of a reaction is the same regardless of the pathway taken.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Reaction Kinetics">
<data key="d0">Reaction Kinetics</data>
<data key="d1">category</data>
<data key="d2">The study of rates of chemical reactions and the factors that affect them.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Enthalpy Change">
<data key="d0">Enthalpy Change</data>
<data key="d1">category</data>
<data key="d2">The heat energy change in a chemical reaction at constant pressure, often denoted as ΔH.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Synthesis Reaction">
<data key="d0">Synthesis Reaction</data>
<data key="d1">category</data>
<data key="d2">A type of chemical reaction where two or more reactants combine to form a single product.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Hydrogen Fuel Cells">
<data key="d0">Hydrogen Fuel Cells</data>
<data key="d1">category</data>
<data key="d2">Devices that convert chemical energy from hydrogen into electricity through a chemical reaction with oxygen.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Rocket Propulsion">
<data key="d0">Rocket Propulsion</data>
<data key="d1">category</data>
<data key="d2">The use of chemical reactions, such as hydrogen combustion, to propel rockets.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<node id="Industrial Water Production">
<data key="d0">Industrial Water Production</data>
<data key="d1">category</data>
<data key="d2">The large-scale production of water through chemical reactions, such as hydrogen combustion.</data>
<data key="d3">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d4">氢气与氧气反应化学方程式.docx</data>
<data key="d5">1751849687</data>
</node>
<edge source="氢气" target="氧气">
<data key="d6">10.0</data>
<data key="d7">Hydrogen and oxygen react chemically to form water.</data>
<data key="d8">chemical reaction,water formation</data>
<data key="d9">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849568</data>
</edge>
<edge source="氢气" target="化学反应">
<data key="d6">9.0</data>
<data key="d7">Hydrogen is a reactant in the chemical reaction that produces water.</data>
<data key="d8">chemical process,reactant</data>
<data key="d9">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849568</data>
</edge>
<edge source="氢气" target="水">
<data key="d6">9.0</data>
<data key="d7">Hydrogen is one of the two elements that combine to form water.</data>
<data key="d8">element composition,molecular structure</data>
<data key="d9">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849568</data>
</edge>
<edge source="氧气" target="化学反应">
<data key="d6">9.0</data>
<data key="d7">Oxygen is a reactant in the chemical reaction that produces water.</data>
<data key="d8">chemical process,reactant</data>
<data key="d9">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849568</data>
</edge>
<edge source="氧气" target="水">
<data key="d6">9.0</data>
<data key="d7">Oxygen is one of the two elements that combine to form water.</data>
<data key="d8">element composition,molecular structure</data>
<data key="d9">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849568</data>
</edge>
<edge source="化学反应" target="水">
<data key="d6">9.0</data>
<data key="d7">Water is the product of the chemical reaction between hydrogen and oxygen.</data>
<data key="d8">compound formation,reaction product</data>
<data key="d9">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849568</data>
</edge>
<edge source="化学反应" target="化学方程式">
<data key="d6">8.0</data>
<data key="d7">A chemical equation represents and describes a chemical reaction.</data>
<data key="d8">scientific notation,symbolic representation</data>
<data key="d9">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849568</data>
</edge>
<edge source="水" target="化学方程式">
<data key="d6">7.0</data>
<data key="d7">The chemical equation shows the formation of water from hydrogen and oxygen.</data>
<data key="d8">product formation,reaction representation</data>
<data key="d9">chunk-a92c992eb95f6e5fe155e1ff3dbce047</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849568</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Hydrogen-Oxygen Combustion Equation">
<data key="d7">Entity Hydrogen-Oxygen Combustion Equation belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Hydrogen (H₂)">
<data key="d7">Entity Hydrogen (H₂) belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Oxygen (O₂)">
<data key="d7">Entity Oxygen (O₂) belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Water (H₂O)">
<data key="d7">Entity Water (H₂O) belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Stoichiometry">
<data key="d7">Entity Stoichiometry belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Thermodynamics">
<data key="d7">Entity Thermodynamics belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Hydrogen Fuel Technology">
<data key="d7">Entity Hydrogen Fuel Technology belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Mathematical Equation Analysis">
<data key="d7">Entity Mathematical Equation Analysis belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Latex Format">
<data key="d7">Entity Latex Format belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Balanced Chemical Reaction">
<data key="d7">Entity Balanced Chemical Reaction belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Law of Conservation of Mass">
<data key="d7">Entity Law of Conservation of Mass belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Stoichiometric Coefficients">
<data key="d7">Entity Stoichiometric Coefficients belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Avogadro's Law">
<data key="d7">Entity Avogadro's Law belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Hess's Law">
<data key="d7">Entity Hess's Law belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Reaction Kinetics">
<data key="d7">Entity Reaction Kinetics belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Enthalpy Change">
<data key="d7">Entity Enthalpy Change belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Synthesis Reaction">
<data key="d7">Entity Synthesis Reaction belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Hydrogen Fuel Cells">
<data key="d7">Entity Hydrogen Fuel Cells belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Rocket Propulsion">
<data key="d7">Entity Rocket Propulsion belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="equation_3e2febd255460eebaac47f32f675fafe" target="Industrial Water Production">
<data key="d7">Entity Industrial Water Production belongs to equation_3e2febd255460eebaac47f32f675fafe</data>
<data key="d8">belongs_to,contained_in,part_of</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d6">20.0</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Hydrogen-Oxygen Combustion Equation" target="Hydrogen (H₂)">
<data key="d6">9.0</data>
<data key="d7">Hydrogen is a reactant in the combustion equation, playing a key role in the reaction.</data>
<data key="d8">chemical reaction,reactant</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Hydrogen-Oxygen Combustion Equation" target="Oxygen (O₂)">
<data key="d6">9.0</data>
<data key="d7">Oxygen is a reactant in the combustion equation, essential for the reaction to occur.</data>
<data key="d8">combustion,reactant</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Hydrogen-Oxygen Combustion Equation" target="Water (H₂O)">
<data key="d6">10.0</data>
<data key="d7">Water is the product of the combustion equation, formed from hydrogen and oxygen.</data>
<data key="d8">product,synthesis</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Hydrogen-Oxygen Combustion Equation" target="Stoichiometry">
<data key="d6">8.0</data>
<data key="d7">The equation is a prime example of stoichiometric principles, balancing reactants and products.</data>
<data key="d8">chemical ratios,mathematical balance</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Hydrogen-Oxygen Combustion Equation" target="Thermodynamics">
<data key="d6">8.0</data>
<data key="d7">The equation illustrates enthalpy change and energy release, key concepts in thermodynamics.</data>
<data key="d8">energy release,exothermic reaction</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Hydrogen-Oxygen Combustion Equation" target="Hydrogen Fuel Technology">
<data key="d6">7.0</data>
<data key="d7">The equation underpins hydrogen fuel technology, showcasing its clean energy potential.</data>
<data key="d8">clean energy,practical application</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Mathematical Equation Analysis" target="Latex Format">
<data key="d6">7.0</data>
<data key="d7">The equation is presented in Latex format, which is commonly used for mathematical and scientific documentation.</data>
<data key="d8">documentation,scientific notation</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Law of Conservation of Mass">
<data key="d6">9.0</data>
<data key="d7">The equation adheres to the law of conservation of mass, ensuring atomic balance on both sides.</data>
<data key="d8">atomic balance,fundamental principle</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Stoichiometric Coefficients">
<data key="d6">8.0</data>
<data key="d7">The coefficients in the equation represent the molar ratios of reactants and products.</data>
<data key="d8">chemical balance,molar ratios</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Avogadro's Law">
<data key="d6">7.0</data>
<data key="d7">The equation relates to Avogadro's law through the mole ratios of gaseous reactants and products.</data>
<data key="d8">gas laws,mole ratios</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Hess's Law">
<data key="d6">8.0</data>
<data key="d7">The enthalpy change in the reaction is consistent with Hess's law, regardless of the reaction pathway.</data>
<data key="d8">enthalpy,thermodynamic consistency</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Reaction Kinetics">
<data key="d6">7.0</data>
<data key="d7">The equation can be studied in terms of reaction kinetics to understand the rate of hydrogen combustion.</data>
<data key="d8">kinetic analysis,reaction rates</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Enthalpy Change">
<data key="d6">9.0</data>
<data key="d7">The reaction is exothermic, releasing energy, which is a key concept in enthalpy change.</data>
<data key="d8">energy release,exothermic</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Synthesis Reaction">
<data key="d6">8.0</data>
<data key="d7">The equation represents a synthesis reaction where hydrogen and oxygen combine to form water.</data>
<data key="d8">chemical combination,product formation</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Hydrogen Fuel Cells">
<data key="d6">9.0</data>
<data key="d7">The reaction is central to the operation of hydrogen fuel cells, which produce clean energy.</data>
<data key="d8">clean energy,electrochemical reaction</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Rocket Propulsion">
<data key="d6">8.0</data>
<data key="d7">The reaction is used in rocket propulsion systems for its high energy output.</data>
<data key="d8">high energy,propulsion</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
<edge source="Balanced Chemical Reaction" target="Industrial Water Production">
<data key="d6">7.0</data>
<data key="d7">The reaction is employed in industrial settings to produce water on a large scale.</data>
<data key="d8">industrial application,large-scale production</data>
<data key="d9">chunk-3e43e1f14ec3bfe2ea1ec990e4a7a3dd</data>
<data key="d10">氢气与氧气反应化学方程式.docx</data>
<data key="d11">1751849687</data>
</edge>
</graph>
</graphml>