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Related Concept Videos

Electrophilic 1,2- and 1,4-Addition of X2 to 1,3-Butadiene01:14

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Electrophilic addition of halogens to alkenes proceeds via a cyclic halonium ion to form a 1,2-dihalide or a vicinal dihalide.
Electrophilic 1,2- and 1,4-Addition of HX to 1,3-Butadiene01:17

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The electrophilic addition of hydrogen halides such as HBr to alkenes and nonconjugated dienes gives a single product as per Markovnikov’s rule.
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Op-amp circuits have significant applications in various fields, including automotive engineering. One such application is cruise control systems in cars, where op-amp circuits are integral for maintaining a constant speed. In these systems, op-amps function as both integrators and differentiators.
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The intensity of a signal, which can be represented by the area under the peak, depends on the number of protons contributing to that signal. The area under each peak is shown as a vertical line called an integral, with the integral value listed under it, as seen in the proton NMR spectrum of benzyl acetate. Each integral value is divided by the smallest integral value to obtain the ratio of the number of protons producing each signal. The ratio reveals the relative number of protons and not...
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The addition of a hydrogen halide to 1,3-butadiene gives a mixture of 1,2- and 1,4-adducts. Since more substituted alkenes are more stable, the 1,4-adduct is expected to be the major product. However, the product distribution is strongly influenced by temperature; low temperature favors the 1,2-adduct, whereas the 1,4-adduct is predominant at high temperature.
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Using a Cyclic Ion Mobility Spectrometer for Tandem Ion Mobility Experiments
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[An introduction [corrected] of RID & XDS integration profiles].

Jun Zhuang1, Ji-wu Zhang

  • 1Global R&D Center of Kodak Health Group, Shanghai.

Zhongguo Yi Liao Qi Xie Za Zhi = Chinese Journal of Medical Instrumentation
|June 8, 2007
PubMed
Summary

This article compares the Radiology Information Disposition (RID) and Cross-Enterprise Document Sharing (XDS) integration profiles for healthcare information exchange. It analyzes their technical development and future prospects in various applications.

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Area of Science:

  • Health Informatics
  • Medical Imaging IT
  • Interoperability Standards

Context:

  • Healthcare information exchange relies on standardized integration profiles.
  • The Radiology Information Disposition (RID) and Cross-Enterprise Document Sharing (XDS) profiles are widely adopted.
  • Understanding their differences is crucial for effective implementation.

Purpose:

  • To introduce and compare the RID and XDS integration profiles.
  • To analyze their applicability in different healthcare information exchange scenarios.
  • To provide a technical overview of their current development status and future prospects.

Summary:

  • The article details the Radiology Information Disposition (RID) and Cross-Enterprise Document Sharing (XDS) integration profiles.
  • A comparative analysis highlights their respective strengths and suitable use cases.
  • Technical insights into their ongoing development and future potential are presented.

Impact:

  • Facilitates informed selection of appropriate integration profiles for healthcare systems.
  • Enhances understanding of interoperability standards in medical imaging and broader health IT.
  • Supports strategic planning for future healthcare information exchange infrastructure.