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Seunghk, you are invited to the Teahouse!

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Hi Seunghk! Thanks for contributing to Wikipedia.
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16:06, 16 February 2017 (UTC)

Welcome!

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Hello, Seunghk, and welcome to Wikipedia! My name is Ian and I work with the Wiki Education Foundation; I help support students who are editing as part of a class assignment.

I hope you enjoy editing here. If you haven't already done so, please check out the student training library, which introduces you to editing and Wikipedia's core principles. You may also want to check out the Teahouse, a community of Wikipedia editors dedicated to helping new users. Below are some resources to help you get started editing.

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  • You can find answers to many student questions on our Q&A site, ask.wikiedu.org

If you have any questions, please don't hesitate to contact me on my talk page. Ian (Wiki Ed) (talk) 00:57, 17 February 2017 (UTC)[reply]

Hello

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Hello testing GabrielaCBranco 01:40, 23 February 2017 (UTC) — Preceding unsigned comment added by Gabrielacbranco (talkcontribs)

Comments on "1-Methylcyclopropene" article

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The reference of the article includes some good sources, but many unreliable references from online websites are also included. Thus, I think that those unreliable sources should be replaced with books or academic journals. In terms of cohesiveness, all contents are related to the topic, but it lacks many other information. For example, it would be better to add more chemical physical properties which are useful when one first deals with this chemicals. Also, I think it's better to write other paragraphs about reaction mechanisms of 1-Methylcyclopropene. Seunghk (talk) 00:54, 8 March 2017 (UTC)[reply]

Reference lists

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  • Kaastrup et al, Using photo initiated polymerization reactions to detect molecular recognition, 2016
(http://pubs.rsc.org/en/content/articlelanding/cs/2016/c5cs00205b#!divAbstract)
→ I will consult this reference to write about a principle of photopolymerization-based signal amplification (PBA).
  • Kaastrup et al, Polymerization-based signal amplification under ambient conditions with 35-second reaction times, 2012
(http://pubs.rsc.org/en/content/articlelanding/2012/lc/c2lc40584a#!divAbstract)
→ I will use this reference to emphasize the notability of the PBA technology such as 'PBA can contribute to development of affordable, fast, and easy-to-use diagnostic tests.'
  • Miller et al, Addressing Barriers to the Development and Adoption of Rapid Diagnostic Tests in Global Health, 2015
(https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4652944/)
→ One of applications with PBA is rapid diagnostic test, I will cite this reference to show why we need the rapid diagnostic test.
  • Padon et al, The Effect of Oxygen on the Three-Component Radical Photoinitiator System : Methylene Blue, MDEA, and Diphenyliodonium Chloride, 2000
(http://onlinelibrary.wiley.com/doi/10.1002/1099-0518(20000915)38:18%3C3336::AID-POLA110%3E3.0.CO;2-3/abstract )
→ I will cite this reference to compare eosin, a main molecule in PBA, with other molecules in terms of their abilities to initiate the polymerization.
  • Borská et al, Photochemically Induced ATRP of Methacrylates in the Presence of Air : The Effect of Light Intensity, Ligand, and Oxygen Concentration, 2016
(http://onlinelibrary.wiley.com/doi/10.1002/marc.201600639/abstract)
→ This reference is for comparison of PBA and another method called ATRP as a future diagnostic technology.

Seunghk (talk) 20:29, 12 March 2017 (UTC)[reply]