What is CABS?

This site will help high school students and teachers find original, independent science research topics and questions that can be done without a professional lab...these can be done in a school lab or even in one's basement! The project ideas and research questions being developed and presented here have been vetted and could lead to true discoveries, and not just finding already known results. See our Welcome message. These are the types of projects that could be done and submitted to high school contests such as the Regeneron Science Talent Search, Junior Science and Humanities Symposium, or the Regeneron International Science and Engineering Fair, and be competitive. If you have an idea to share, or a question about one of the project ideas, contact us at vondracekm@eths202.org.

Pages (on the right side of the screen) have lists of ideas for different types of science research projects, and clicking on one of those ideas will take you to posts with details and all sorts of information about that type of project. Get more information about why there is a need for CABS!

Monday, October 9, 2023

Nobel Prize in Economics awarded to Harvard professor, for pay differences for women

 The last Nobel, for economics, was awarded today to Claudia Goldin, a Harvard professor, for her groundbreaking work in understanding the historical reasons and consequences of the gender gap in payment for work. She went through a study of 200 years of data to understand how women's roles in the labor market have evolved, and the reasons why they evolved the way they did. To this day, this is a topic of much debate and political and economic activity, as record numbers of women are becoming educated and are working on careers. 

This is also historic, since Dr. Goldin is just the 3rd woman to win the Nobel in economics. 



Wednesday, October 4, 2023

Nobel Prize in Chemistry for Quantum Dot discovery

 Three scientists are sharing the Nobel in Chemistry for their discovery and applications of quantum dots

Moungi Bawendi (MIT), Louis Brus (Columbia U), and Alexei Ekimov (industry, NY), discovered these tiny bits of matter in their nanotechnology work. When materials shrink in size, at some point the laws and weirdness of quantum mechanics take over. Quantum dots are nanomaterials that are so small, this happens - effectively they are the smallest particles in nanoscience. 

Researchers and doctors use these for everything from television images on flat screens to LED lighting to surgeons using them to help remove tumors. 

Tuesday, October 3, 2023

Nobel Prize in Physics for attosecond laser pulses - and only 5th woman to win a Physics Nobel!

 Here's a metric unit one does not see very often - atto. This is one quintillionth (10^-18)! Three physicists figured out how to create attosecond pulses of light in order to study and measure electron activity and processes. It revolutionized how scientists can view and measure the shortest processes one can imagine, and that occur in the quantum realm on a regular basis. 

The winners are Pierre Agostini (French, at Ohio State), Ferenc Krausz (Hungarian), and Anne L'Huillier (French). This is historic, as well, since Dr. L'Huillier is only the 5th woman to ever win a Nobel for Physics...in 117 years! The technique of creating attosecond laser pulses opened a new type of physics and can be used to observe and measure chemical reactions, molecular and atomic processes in new ways.

Monday, October 2, 2023

Nobel Prize in Medicine & Physiology, 2023

 The Nobel Prize was jointly awarded to a Hungarian-American and an American for their work in developing messenger RNA vaccines. Katalin Kariko and Drew Weissman will share the Prize for their groundbreaking work that was used to develop the COVID-19 vaccines, which have been credited for saving millions of lives the past 3 years. Both are professors at the University of Pennsylvania, and will split the nearly $1 million prize. 

Saturday, September 30, 2023

If you have any sort of high-speed camera for video, USE IT IN RESEARCH! Example of Rupert's Drop

 Here is a fascinating video about Rupert's Drop, a really interesting piece of glass with a certain shape attained when molten glass is cooled rapidly in cold water. The structure and strength is amazing, but even more curious is how it EXPLODES - not break or shatter, but truly explodes in fine pieces of glass! 

The thing to take away from it as far as research is concerned, is how valuable high-speed photography and video can be for watching details of time evolution of a given system and interaction or event! If you have high-speed video capabilities at any level, please consider using that technology in research projects. If you have a project where something is changing, try to capture it with video for analysis purposes! Many cameras now have speeds of 120 fps, 240 fps, 480 fps, and even 1000 fps (with reduced resolution the faster it gets), where the cost is within the $400 or so range...something that might be affordable within a science department budget. Give it a try if possible! Most schools or individuals won't be able to afford the camera being used in this video, but the gist holds true.



Friday, September 8, 2023

Increasing diversity in STEM professions

 When one sees photos or pictures of the scientists who made discoveries years ago, they are overwhelmingly white men. Many believe this is still the case among professional STEM workers, but consider that things have been changing over the past ten years in particular. Here are some links to show how STEM is becoming more diverse - slowly at times, but many feel this is a really positive step! 

500 Queer Scientists (https://500queerscientists.com/
500 Women Scientists (https://500womenscientists.org/)

Sunday, August 27, 2023

Is it possible to simulate some climate change features in the lab?

 An interesting possibility arises for high school students to pursue when it comes to vegetation of the future. If a school has a greenhouse, or if students have access to one in the community, interesting possibilities may arise for trying to create conditions of the future due to climate change. 

Is it possible to take climate model predictions for average temperatures, moisture, soil conditions and create them in a controlled environment? If so, students could look at current vegetation and crops in a greenhouse under the predicted environmental conditions. How do current plants and crops react to those changes? Or what plants would grow best in those predicted conditions? Something like this could be fun to pursue, and if one had good control to set up and sustain different environment conditions within the greenhouse, and entire research program could be developed. Something to think about.