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Newscripts

December 20, 2010
Volume 88, Number 51
p. 56

Chemical Wooing, Configurational Isocats

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In preparation for the holiday party season, chemists might be searching for their own digital Cyrano de Bergeracs to feed them lines worthy of wooing their objects of desire. If looking for eloquence and romance, perhaps they should not turn to the social networking website Twitter for guidance. There, they can find the perfect pickup line instead.

Early last month, the Twitterverse 
was, ahem, atwitter with 140-character CHEMISTRY PICKUP LINES after a prompt from tweeter @FakeScience: “Chemist pickup artists used their best lines to get Avogadro’s number.” Gems from other users were submitted shortly thereafter:

■ I’m cobalt and you’re nickel. Let’s make an alloy.

■ I’d like to form a covalent bond with you.

■ You’re so hot, your electrons are changing state.

■ You’re lutetium and I’m vanadium. Together, we’re in LuV

■ Are you part of the Krebs cycle? ’Cause you make me want to transfer electrons.

■ If I could rearrange the periodic table, I’d put U and I together.

■ If I were an enzyme, I’d be a helicase so I could unzip your genes.

■ Our love will be like sodium in water: brief, explosive, and hot.

Surely, some of these lines have been floating around bars and parties for ages. In fact, one or two showed up in an online discussion thread (“A request for cheesy chemistry-related pickup lines”) in 2007 on the Chemical Forums website. No reason was given for the request, nor did many participants fess up to having any success with their lines.


In other online news, cats are coming 
to the rescue of hapless organic chemistry students via the Web. James A. Ashenhurst is an organic chemistry postdoc at Hebrew University of Jerusalem who wants to “put the image of organic chemistry as a horror movie to rest. 
Or at least make it less scary and more campy.” And what better way to accomplish that goal than with CUTE, FLUFFY KITTIES? Ashenhurst has been tutoring chemistry since April and uses his website, “Master Organic Chemistry,” to try out different methods for teaching organic chemistry to undergraduates, including online study sessions and configurational “isocats.”

Stereocatistry: The Cat Line Diagram helps novices grasp stereochemistry concepts. H is head, T is tail, and F is foot. James Ashenhurst
Stereocatistry: The Cat Line Diagram helps novices grasp stereochemistry concepts. H is head, T is tail, and F is foot.

Stereochemical concepts can be tough for students to grasp. But cats? Well, cats are easy. Cats and chemists go together like the dynamic Muppet duo Beaker and Dr. Bunsen Honeydew. “Also, cute pictures of cats are great drivers of Internet traffic,” Ashenhurst says. And cats are so plentiful around the university that Ashenhurst has a variety of models to explain enantiocats, diastereocats, and the like.

For example, Freaky Sawhorse Cat has a leg and tail interchanged to demonstrate configuration. Low-energy conformation and high-energy conformation are represented, respectively, by a resting cat and the same cat standing on its hind legs. Finally, there’s the Cat Line Diagram (or, for traditionalists, a line-wedge diagram) to aid in analyzing molecules, er, felines of different sizes, shapes, and ages.

It’s too early to tell what impact isocats will have on organic educational techniques. Ashenhurst introduced his isocats just last month, which is past the point in the semester when students cover stereochemistry. “I don’t know if it’s really clarified the concepts for anyone, but it seems to have some entertainment value,” he says.

Rachel S. Pepling wrote this week's column. Please send comments and suggestions to newscripts@acs.org.

Chemical & Engineering News
ISSN 0009-2347
Copyright © 2011 American Chemical Society
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