chlorofluorocarbons i think
The answer to the blank in the phrase "liquid water on Earth's surface _____ water vapor rises into the atmosphere" is "evaporates." When liquid water evaporates, it transforms into water vapor, which then rises into the atmosphere. This process is a key component of the water cycle, contributing to weather patterns and climate regulation.
Water vapor can be added to the atmosphere through various natural processes, primarily evaporation and transpiration. Evaporation occurs when water from oceans, lakes, and rivers turns into vapor due to heat from the sun. Transpiration involves plants releasing water vapor from their leaves during photosynthesis. Additionally, human activities, such as agriculture and industrial processes, can also contribute to the increase of water vapor in the atmosphere.
The main source of water vapor in the atmosphere is evaporation from oceans, lakes, rivers, and other bodies of water due to solar radiation. This process involves liquid water changing into water vapor, which then enters the atmosphere.
Water vapor is prevented from escaping into space primarily due to Earth's gravity, which holds the atmosphere, including water vapor, close to the planet's surface. Additionally, the atmosphere's temperature and pressure conditions create a balance that keeps water vapor within it. The presence of other gases, such as nitrogen and oxygen, also contributes to the overall density of the atmosphere, further inhibiting the escape of lighter gases like water vapor.
Water vapor's concentration in the atmosphere can vary greatly in both time and location, making it difficult to accurately represent in a static graph. Additionally, water vapor is highly variable across vertical layers of the atmosphere, further complicating its representation in a simple graph.
The product of the reaction when sulfur trioxide combines with water vapor in the atmosphere is sulfuric acid (H2SO4). This reaction is responsible for acid rain formation.
h2so4 for a+
Sulfur oxide combines with water in the atmosphere to form sulfuric acid, not sulfide acid. This reaction occurs when sulfur dioxide (SO2) and other sulfur oxides (SOx) mix with water vapor in the presence of sunlight.
Burning high sulfur coal combines with oxygen in the air to produce sulfur dioxide gas. When sulfur dioxide reacts with water vapor in the atmosphere, it forms sulfuric acid, which contributes to acid rain.
When water vapor combines with carbon dioxide in the atmosphere, it forms carbonic acid (H2CO3). This is a weak acid that contributes to ocean acidification when it dissolves in bodies of water like oceans and lakes.
Chemical reactions in the atmosphere involving sulfur can lead to the formation of sulfur dioxide (SO2) and sulfuric acid (H2SO4). These compounds contribute to acid rain, air pollution, and can also affect human health and the environment.
sulfuric acid, H2SO4 The chemical equation is SO3(g) + H2O(l) --> H2SO4(aq).
Sulfur dioxide combining with water vapor in the air produces sulfuric acid, a highly acidic and harmful pollutant that contributes to acid rain.
The sulfur content in fossil fuels, particularly coal and oil, when burned releases sulfur dioxide (SO2) into the atmosphere. This SO2 combines with water vapor to form sulfuric acid (H2SO4), a major contributor to acid rain.
When sulfur dioxide combines with water vapor, it forms sulfuric acid. Sulfuric acid is a strong mineral acid that is commonly used in chemical processes and industrial applications.
When water vapor reacts with nitrogen oxide and sulfur dioxide in the atmosphere, it forms acid rain. This can have harmful effects on the environment by deteriorating buildings, harming wildlife, and polluting water sources.
Sulfur is the element present in coal that leads to acid rain when it combines with oxygen and water vapor in the atmosphere to form sulfuric acid. Burning coal releases sulfur dioxide into the air, which can then react with other compounds to create acid rain.