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相关概念视频

Graphing the Wave Function01:13

Graphing the Wave Function

1.8K
Consider the wave equation for a sinusoidal wave moving in the positive x-direction. The wave equation is a function of both position and time. From the wave equation, two different graphs can be plotted.
1.8K
Graphical and Analytic Representation of Sinusoids01:20

Graphical and Analytic Representation of Sinusoids

404
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...
404
¹³C NMR: ¹H–¹³C Decoupling01:04

¹³C NMR: ¹H–¹³C Decoupling

1.1K
The probability of having two carbon-13 atoms next to each other is negligible because of the low natural abundance of carbon-13. Consequently, peak splitting due to carbon-carbon spin-spin coupling is not observed in spectra. However, protons up to three sigma bonds away split the carbon signal according to the n+1 rule, resulting in complicated spectra.
A broadband decoupling technique is used to simplify these complex, sometimes overlapping, signals. Broadband decoupling relies on a...
1.1K
Atomic Emission Spectroscopy: Overview01:20

Atomic Emission Spectroscopy: Overview

2.2K
Atomic emission spectroscopy (AES) is an analytical technique used to determine the elemental composition of a sample by analyzing the light emitted from excited atoms. In AES, atoms in a sample are excited to higher energy levels by thermal energy from high-temperature sources, such as plasma, arcs, or sparks. When these excited atoms return to lower energy states, they emit light at specific wavelengths characteristic of each element. The resulting atomic emission spectrum, which consists of...
2.2K
¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)01:20

¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)

1.1K
When proton-coupled carbon-13 spectra are simplified by a broadband proton decoupling technique, structural information about the coupled protons is lost. Distortionless enhancement by polarization transfer (DEPT) is a technique that provides information on the number of hydrogens attached to each carbon in a molecule. While the DEPT experiment utilizes complex pulse sequences, the pulse delay and flip angle are specifically manipulated. The resulting signals have different phases depending on...
1.1K
Properties of Fourier Transform II01:24

Properties of Fourier Transform II

221
The Fourier Transform (FT) is an essential mathematical tool in signal processing, transforming a time-domain signal into its frequency-domain representation. This transformation elucidates the relationship between time and frequency domains through several properties, each revealing unique aspects of signal behavior.
The Frequency Shifting property of Fourier Transforms highlights that a shift in the frequency domain corresponds to a phase shift in the time domain. Mathematically, if x(t) has...
221

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相关实验视频

Updated: Jul 8, 2025

ARL Spectral Fitting as an Application to Augment Spectral Data via Franck-Condon Lineshape Analysis and Color Analysis
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ARL Spectral Fitting as an Application to Augment Spectral Data via Franck-Condon Lineshape Analysis and Color Analysis

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TEE-Graph:为基于云的图谱分析提供高效的隐私和所有权保护.

A K M Mubashwir Alam1, Keke Chen1

  • 1TAIC Lab, Computer Science, Marquette University, Milwaukee, WI, United States.

Frontiers in big data
|December 18, 2023
PubMed
概括

本研究介绍了TEE-Graph,这是一种用于云中安全图谱分析的新解决方案. TEE-Graph 增强了对贡献者和所有者的数据隐私和所有权保护,优于传统方法.

科学领域:

  • 计算机科学 计算机科学
  • 云计算 云计算 云计算
  • 数据 隐私 数据 隐私 数据

背景情况:

  • 大图形数据,如社交网络,需要大量的计算资源.
  • 公共云提供了可扩展性,但对数据隐私和所有权构成挑战.
  • 现有的解决方案不足以保护数据贡献者和数据所有者.

研究的目的:

  • 提出一种基于可信执行环境 (TEE) 的新型解决方案,TEE-Graph,用于保密的图谱分析.
  • 解决云环境中数据贡献者和所有者的隐私和所有权保护需求.
  • 开发有效和安全的方法来分析外包的大图.

主要方法:

  • 使用可信执行环境 (TEE) 功能用于保密计算.
  • 实现访问模式保护的差异隐私.
  • 采用基于TEE的兰佐斯和尼斯特罗姆方法来进行高效的图谱分析.

主要成果:

  • 与PrivateGraph等软件加密方法相比,TEE-Graph显示了显著降低的计算,存储和通信成本 (10^3-10^5倍).
  • 访问模式保护仅为整体计算成本增加了10% - 25%.
  • 这种方法对基于访问模式的攻击是免疫的.
关键词:
在SGX上,SGX是SGX.在TEEEE中,你会看到TEE.访问模式的访问模式大图表大图表大图表图形分析 图形分析保护所有权 保护所有权

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Analysis of SEC-SAXS data via EFA deconvolution and Scatter

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相关实验视频

Last Updated: Jul 8, 2025

ARL Spectral Fitting as an Application to Augment Spectral Data via Franck-Condon Lineshape Analysis and Color Analysis
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Analysis of SEC-SAXS data via EFA deconvolution and Scatter
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Analysis of SEC-SAXS data via EFA deconvolution and Scatter

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Applying Hyperspectral Reflectance Imaging to Investigate the Palettes and the Techniques of Painters
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Applying Hyperspectral Reflectance Imaging to Investigate the Palettes and the Techniques of Painters

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结论:

  • TEE-Graph为外包图谱分析提供了一个高效和安全的解决方案.
  • 它有效地解决了TEE相关图形分析中的独特所有权和访问模式保护问题.
  • TEE-Graph框架可扩展到其他需要强有力的隐私和所有权保障的图形分析问题.