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相关概念视频

UV–Vis Spectrometers01:14

UV–Vis Spectrometers

The absorbance of UV and visible (UV–visible) radiations is measured using a UV–visible spectrophotometer. Deuterium lamps, which emit UV radiation, and tungsten lamps, which produce radiation in the visible region, are used as light sources in UV–visible spectrophotometers. A monochromator or prism is used for diffraction grating, i.e., to split the incoming radiation into different wavelengths. A system of slits is used to focus the desired wavelength on the sample cell. Samples for...
IR Spectrometers01:25

IR Spectrometers

There are two main infrared (IR) spectrophotometers: dispersive IR spectrometers and Fourier transform infrared (FTIR) spectrometers. In a dispersive IR spectrometer, a beam of infrared radiation produced by a hot wire is divided into two parallel equal-intensity beams using mirrors. One beam passes through the sample, while another is a reference beam. The beams then move through the monochromator, which separates the radiations into a continuous spectrum of different frequencies. The...
Photoluminescence: Applications01:14

Photoluminescence: Applications

Photoluminescence offers a wide range of applications due to its inherent sensitivity and selectivity. This technique allows for both direct and indirect analyses of the analyte. Direct quantitative analysis is possible when the analyte exhibits a favorable quantum yield for fluorescence or phosphorescence. However, an indirect analysis may be feasible if the analyte is not fluorescent or phosphorescent, or if the quantum yield is unfavorable. Indirect methods include reacting the analyte with...
Determination of Crystal Structures01:29

Determination of Crystal Structures

In the late 1800s, the revelation that light extended beyond visible wavelengths led to the discovery of X-rays by Wilhelm Roentgen. Recognized as high-energy electromagnetic radiation with short wavelengths, X-rays prompted exploration into their interaction with crystals. Max von Laue proposed in 1912 that the periodic arrangement of atoms, ions, or molecules in crystals would cause them to diffract X-rays, a hypothesis confirmed through experiments with copper sulfate and zinc sulfide...
Electronic Distance Measuring Instruments01:30

Electronic Distance Measuring Instruments

Electronic Distance Measuring Instruments (EDMs) are essential tools in modern surveying, offering precise distance measurements by emitting electromagnetic signals and calculating the time required for these signals to travel to a target and return. Two primary types of signals are used in EDMs — light waves and microwaves — each suited to specific environmental and distance requirements. Light-wave-based EDMs utilize either infrared or laser light, providing high accuracy over short distances...
Microbial Biosensors01:17

Microbial Biosensors

Microbial biosensors are analytical devices that utilize living microbes to detect specific substances through measurable signals. These devices consist of two main components: biosensing organisms and signal-transducing elements. Biosensing organisms, such as Escherichia coli or Saccharomyces cerevisiae, are typically housed in multiwell plates connected to transducers, enabling rapid, real-time detection of target analytes.Signal Generation MechanismWhen a target analyte—such as...

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相关实验视频

Updated: Jul 12, 2026

An Objective and Child-friendly Assessment of Arm Function by Using a 3-D Sensor
07:25

An Objective and Child-friendly Assessment of Arm Function by Using a 3-D Sensor

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使用惯性和光学传感器对建筑物可访问性的分析.

Tomás E Martínez-Chao1, Agustín Menéndez-Díaz2, Silverio García-Cortés3

  • 1Department of Civil, Building and Environmental Engineering, University of Naples "Federico II", 80125 Naples, Italy.

Sensors (Basel, Switzerland)
|July 8, 2023
PubMed
概括

这项研究提出了一种新的模型,用于分析流动性有限的人的城市可访问性. 该模型识别可访问的路线和障碍物,改善包容性城市空间设计.

关键词:
可访问性 无障碍性惯性传感器 惯性传感器这些光学传感器是光学传感器.最好的路线是最优的路线.轮椅是一个轮椅.

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科学领域:

  • 城市规划和可访问性研究.
  • 地理空间分析和测量工作
  • 残疾人研究和包容性设计

背景情况:

  • 包容性地利用城市空间需要详细了解公共建筑的可访问性.
  • 建筑改进正在进行中,但挑战仍然存在,特别是在历史地区.
  • 评估城市路线和建筑物通道对于公平提供服务至关重要.

研究的目的:

  • 开发一个模型,详细分析城市路线和建筑可访问性.
  • 具体解决城市环境中行动能力低下者需求.
  • 确定城市环境中合适的交通路线和潜在障碍.

主要方法:

  • 开发一个集成光谱技术与惯性和光学传感器的模型.
  • 在行政大楼周围的行人路线的数学分析.
  • 应用程序用于评估建筑物可访问性,路线适用性,道路表面状况和建筑障碍.

主要成果:

  • 该模型允许对行人路线和城市可达性进行详细分析.
  • 确定了行动能力受限者面临的具体挑战,包括道路表面的恶化和建筑障碍.
  • 提供了一种方法来评估公共行政建筑及其周围环境的可访问性.

结论:

  • 开发的模型提供了一个强大的工具,用于评估和改进行动不便的人的城市可访问性.
  • 对城市路线和建筑物通道的详细分析对于创建真正包容性的公共空间至关重要.
  • 这种方法可以为城市规划和建筑修改提供信息,以提高历史和现有结构的航行性和安全性.