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相关概念视频

Precipitation and Co-precipitation01:17

Precipitation and Co-precipitation

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Precipitation and coprecipitation methods can be used to separate a mixture of ions in a solution. In qualitative inorganic analysis, ions that form sparingly soluble precipitates with the same reagent are separated based on the differences in solubility products. For example, consider the separation of Cu(II) and Fe(II) ions by precipitation as insoluble sulfides. First, copper(II) sulfide is precipitated by the addition of acidic H2S, where the dissociation of H2S is suppressed. Adding H2S...
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Precipitation Processes01:12

Precipitation Processes

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The experimental conditions in a gravimetric analysis should be optimized to maximize the particle size and purity of the obtained precipitate. Ideally, the concentration of the precipitating reagent should be low with effective stirring to maintain low relative supersaturation for the growth of large crystals. In homogeneous precipitation, the precipitant is slowly generated by a chemical reaction in the solution to avoid local reagent excesses. For example, urea decomposes gradually to...
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What is Weather?01:07

What is Weather?

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Design Example: Analyzing Capacity Contours for Flood Risk Assessment01:17

Design Example: Analyzing Capacity Contours for Flood Risk Assessment

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Flood risk assessment involves careful planning and analysis to ensure the safety of communities near water retention structures. Capacity contours are a vital tool in this process, as they illustrate the potential spread of water at specific levels in a given area. In the context of building a bund across a small valley, these contours play a critical role in evaluating the safety of nearby residential areas.In this example, the bund is intended to store stormwater in the valley. The engineers...
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Types of Coprecipitation01:10

Types of Coprecipitation

607
Coprecipitation is the contamination of a precipitate by otherwise soluble species and occurs via different processes. In colloidal precipitates, coprecipitation occurs via surface adsorption. For instance, barium sulfate has a primary layer of adsorbed barium ions and a secondary layer of nitrate counterions. This results in contamination of the precipitate by barium nitrate.
Sometimes, ions in a crystal lattice can undergo isomorphous replacement by inclusions of similar charge and size. For...
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Applications of GIS: Disaster Management and Emergency Response01:29

Applications of GIS: Disaster Management and Emergency Response

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Geographic Information System (GIS) technology is essential for risk identification, action prioritization, and resource optimization in critical situations like flooding and earthquakes. By integrating spatial and demographic data, GIS provides a comprehensive framework for emergency response.GIS integrates data layers, like rainfall intensity, topography, elevation profiles, and river levels, to model high-risk flood zones. These layers assess areas susceptible to flooding based on their...
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Updated: Jun 26, 2025

Design and Construction of an Urban Runoff Research Facility
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城市发展模式对极端降雨事件的影响.

Long Yang1,2, Yixin Yang3,4, Ye Shen3,4

  • 1School of Geography and Ocean Sciences, Nanjing University, Nanjing, China. yanglong@nju.edu.cn.

Nature communications
|May 11, 2024
PubMed
概括
此摘要是机器生成的。

城市发展模式显著影响极端降雨. 紧型城市的降雨频率增加,与分散的城市不同,由于热力和空气动力学效应.

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A Protocol for Conducting Rainfall Simulation to Study Soil Runoff
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相关实验视频

Last Updated: Jun 26, 2025

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科学领域:

  • 气候学 气候学 气候学
  • 城市气象城市气象学
  • 环境科学 环境科学

背景情况:

  • 全球城市人口正在增长,导致城市发展模式多样化.
  • 现有的研究表明,在降雨异常中存在城市特征,但缺乏对降雨如何应对不同城市发展模式的全球理解.

研究的目的:

  • 调查与不同城市发展模式相关的极端降雨暴露的全球差异.
  • 了解驱动这些不同降雨反应的机制.

主要方法:

  • 全球1790个内陆城市的极端降雨数据分析.
  • 使用对流允许模拟来建模城乡互动.

主要成果:

  • 与农村环境相比,发展紧的城市在市中心地区的极端降雨频率增加得更大.
  • 发展分散的城市在极端降雨频率方面表现出较少的异常.
  • 允许对流的模拟表明,紧的城市足迹增强了城乡热差异和空气动力学干扰,导致降雨差异.

结论:

  • 城市发展模式显著影响极端降雨频率,紧的发展在城市中心加剧了它.
  • 这些发现为城市层面的气候危害减缓战略提供了关键的见解,特别是在快速城市化地区.