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Time-Series Graph00:54

Time-Series Graph

4.3K
A time-series graph is a line graph with repeated measurements taken at successive intervals of time. It is also called a time series chart. To construct a time-series graph, one must look at both pieces of a paired data set. The horizontal axis is used to plot the time increments, and the vertical axis is used to plot the values of the variable that one is measuring. By using the axes in this way, each point on the graph will correspond to time and a measured quantity. The points on the graph...
4.3K
Multiple Bar Graph01:07

Multiple Bar Graph

5.0K
As the name suggests, a multiple bar graph is the same as a bar graph but has multiple bars to depict relationships between different data values. One can include as many parameters as possible. However, each parameter must have the same unit of measurement.
Each bar or column in the multiple bar graph represents a data value. These graphs are used primarily in interrelating two or more sets of data. The categories of different kinds of data are listed along the horizontal or x-axis, whereas...
5.0K
Velocity and Position by Graphical Method01:34

Velocity and Position by Graphical Method

7.2K
Velocity and position can be calculated from the known function of acceleration as a function of time. The total area under the acceleration-time graph and the velocity-time graph gives the change in velocity and position, respectively. In the case of an airplane, its acceleration is tracked using the inertial navigation system. The pilot provides the input of the airplane's initial position and velocity before takeoff. The inertial navigation system then uses the acceleration data to...
7.2K
Graphical and Analytic Representation of Sinusoids01:20

Graphical and Analytic Representation of Sinusoids

363
Analyzing two sinusoidal voltages with equal amplitude and period but different phases on an oscilloscope, an instrument used to display and analyze waveforms, involves a three-step process.
The first step is measuring the peak-to-peak value, which is twice the amplitude of the sinusoid. This provides information about the maximum voltage swing of the waveform.
Secondly, the period and angular frequency are determined. The period is the time taken for one complete cycle of the waveform, while...
363
Plotting of Topographic Maps01:29

Plotting of Topographic Maps

33
Topographic maps represent the Earth's surface features using contour lines, which connect points of equal elevation to create a two-dimensional representation of three-dimensional terrain. Creating a topographic map requires a systematic approach.Begin by plotting a scaled grid and marking intersections corresponding to the survey's elevation data points. Assign elevation values at these intersections to build the base map. Next, determine contour levels using a consistent contour interval,...
33
Ogive Graph01:07

Ogive Graph

5.5K
An ogive graph is sometimes called a cumulative frequency polygon. It is one type of frequency polygon that shows cumulative frequency. In other words, the cumulative percentages are added to the graph from left to right. An ogive graph plots cumulative frequency on the vertical y-axis and class boundaries along the horizontal x-axis. It’s very similar to a histogram; only instead of rectangles, an ogive displays a single point where the top right of the rectangle would be. Creating this...
5.5K

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相关实验视频

Updated: May 24, 2025

Multicolor Time-lapse Imaging of Transgenic Zebrafish: Visualizing Retinal Stem Cells Activated by Targeted Neuronal Cell Ablation
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Multicolor Time-lapse Imaging of Transgenic Zebrafish: Visualizing Retinal Stem Cells Activated by Targeted Neuronal Cell Ablation

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ZigzagNetVis: 建议图形可视化的时间分辨率,使用西格萨克持久性.

Raphael Tinarrage, Jean R Ponciano, Claudio D G Linhares

    IEEE transactions on visualization and computer graphics
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    此摘要是机器生成的。

    ZigzagNetVis建议通过使用齐格扎格持久同质学来分析时间图的最佳时间分辨率. 这种方法有助于通过改进的可视化技术,揭示复杂系统中隐藏的模式.

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    科学领域:

    • 图形理论是指图形的理论.
    • 拓数据分析 (TDA) 的方法
    • 信息可视化 信息可视化

    背景情况:

    • 时间图模拟动态系统,但在选择适当的时间分辨率方面,分析受到挑战的阻碍.
    • 视觉分析时间图是识别趋势和异常的关键,但选择正确的分辨率,特别是对于稀疏的数据,仍然很困难.
    • 时间切割,将事件随着时间的推移分组,可以揭示模式,但需要仔细选择时间分辨率.

    研究的目的:

    • 提出ZigzagNetVis,一种用于建议时间图分析相关时间分辨率的新方法.
    • 通过引入新的基于时间线的可视化技术来增强时间图的视觉分析.
    • 开发和评估一个基于Web的系统原型,实现拟议的方法和可视化工具.

    主要方法:

    • 利用从拓数据分析 (TDA) 的一种技术 - - 齐克扎克持久同质学来识别导致重大拓变化的分辨率.
    • 结合彩色条形码,一种由持久性条形码启发的新型可视化,用于基于时间线的图形分析.
    • 开发一个基于Web的系统原型,以展示ZigzagNetVis方法及其可视化功能.

    主要成果:

    • ZigzagNetVis有效地建议时间分辨率,突出显示图形结构中的实质性拓变化.
    • 彩色条形码可视化提供了一种直观的方式来探索时间图形模式.
    • 一项涉及27名参与者的用户研究和定量评估证实了ZigzagNetVis.的有用性和有效性.

    结论:

    • ZigzagNetVis提供了一种强大的方法来确定分析时间图的最佳时间分辨率.
    • 提出的方法和可视化工具显著改善了视觉图分析的过程,特别是对于稀疏的时间数据.
    • 开发的系统原型证明了ZigzagNetVis在现实场景中的实际应用性,并验证了ZigzagNetVis在现实场景中的有效性.