Serving Up A Side of Science

If you have ever wondered about the science behind your Thanksgiving Day Feast, this post is a must read to learn the fun facts behind triptophan, cranberry sauce, starches, fats, maize and more!

Ah, Thanksgiving. A day full of turkey, cranberries, pie, and, of course, SCIENCE! Thanksgiving is a classic American holiday when families gather around the dinner table. Along with providing an opportunity for family members to celebrate, this holiday also serves as the perfect occasion to impress others with these fun, holiday-themed science facts.

The True Culprit Behind The “Turkey-Day Coma”

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For eons upon eons (or at least the past few decades), we’ve blamed post-Thanksgiving drowsiness on tryptophan, an amino acid found in turkey meat. Is this really fair or should we be pointing our fingers somewhere else? Perhaps somewhere closer to our empty plates and full bellies? Tryptophan indeed is linked with drowsiness – that’s no myth. It’s a biochemical precursor to serotonin, which has a calming effect on the brain and body. And tryptophan is indeed found in turkey meat. It’s also present in chocolate, some fruits, dairy, red meat and eggs. However, tryptophan is almost certainly not the cause of the Turkey Day food coma. First of all, the levels of tryptophan that we ingest in even a Thanksgiving-sized portion of turkey is not all that much more than is found in what we eat on any other day. Plus tryptophan works best on an empty stomach, not a stuffed one! The real culprit? It’s probably a combination of your body working hard to digest a large meal and a fervent desire to put off doing the dishes!

 

From Sauce to Solid: The Science of Cranberries

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“Slurp…plop!” Recognize that sound? You might if your family usually serves jellied cranberries on Thanksgiving. Cranberries have been known to help fight cancer and also contain antioxidants and nutrients that are beneficial to both dental and cardiovascular health as well as anti-aging properties. Cranberries can be served as a sauce – some like it runny; others like it wiggly; and still some like it firmly gelled. No matter which version you prefer, they all have the exact same ingredients – water, sugar and cranberries. So what makes one version turn into a gelatin while the other stays saucy? It all comes down to the cooking time & how it affects the natural pectin found in the cranberry. As they are cooked, the cranberries pop open, releasing pectin, which helps them stick together.  Pectin is a natural polymer found in between plant’s cells and within the cell walls. It helps “glue” the plant cells together and keeps plant tissues firm. And in cooked cranberries it can help stick the cooked fruit together to form a solid jelly. Jellied cranberries are thick, like gelatin, and retain the shape of the mold in which it was placed, which might mean Aunt Sallie’s turkey mold or even the shape of a can. If you are looking at a way to please everyone at dinner by serving both gooey and jellied cranberries, head into the kitchen & discover the science of cranberries for yourself!

Super-Charged Spuds

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Thanksgiving would not be the same without mashed potatoes. Not only do they go great with turkey and gravy, they conduct electricity too. Potatoes have hidden energy that can turn your thanksgiving side dish into a real, working battery!  The potato battery is a type of electrochemical cell that demonstrates current electricity. An electrochemical cell converts chemical energy into electrical energy. In the potato battery, there is a transfer of electrons between a galvanized nail and copper wire that is inserted into the potato. The potato conducts electricity, keeping ions separate, so that the electrons in the copper wire are forced to move generating an electric current. It’s not enough power to shock you, but the potato can generate readings on electricity meters, make light bulbs glow and even power small digital clocks. You can super-charge your spuds this Thanksgiving by making your very own potato clock!

 

 

The “A-Maiz”ing Ear 

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We can’t talk about the traditional Thanksgiving meal without mentioning corn! Known as “maize” to Native Americans, the relationship between corn & Thanksgiving go all the way back to the first harvest time celebration feast in Plymouth. Whether in a creamy custard or casserole, corn dishes add a little more sweetness and richness to our decadent meal. Corn is grown on every continent except Antarctica and is by far, America’s number one field crop.  Not only does it provide great nutritional benefits for us but it has many uses in our everyday life including corn starch, popcorn, corn syrup, corn plastics, and of course, ethanol.  One bushel of corn can make 32 pounds of starch, 33 pounds of sweetener, 2.8 gallons of ethanol fuel and 1.6 pounds of corn oil.  Ethanol is an alcohol-based fuel, also known as biofuel, which is produced from the ears of the corn plant.  Ethanol can power cars and also be used as cooking oil.  Biofuel burns cleaner than gasoline, reducing air and water pollution. As you bite into that juicy ear of corn during your Turkey Day feast, use some of these facts to “a-maize” your dinner guests with the surprising versatility of plain old corn!

 

 

 

 

Get Saucy with Starches

Who doesn’t love soaking up the last bit of gravy on Thanksgiving? Sauces provide concentrated flavor in a thickened liquid form that compliments the rest of your meal. No matter if they’re salty, spicy, savory, or sweet, sauces make foods richer and more enjoyable! There are many ways to thicken sauces, but one of the most common ways is to use starches. Cooks have two choices in deciding how to thicken sauces with starches: they can use the starches from grains, or the starches from tubers and roots. The starch in grains like wheat, corn, and rice is different from the starch in roots and tubers like potatoes, tapioca, and arrowroot.  To make your sauce or gravy you add the starch to the liquid. It sounds like a simple task – You just put it in, right? Wrong. Mixing starches & liquids can be a very tricky process. There are several methods to incorporate the two together, including mixing the starch first with a small amount of cold water, mixing the starch first with a bit of fat, or making a roux.  By experimenting with different starches and liquids, you can watch the molecules go to work & discover which has the ultimate thickening power!

Perfecting Your Pumpkin Pie

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Pumpkin pie is one of the staples of the Thanksgiving feast, having been linked to the holiday since that autumn eve more than 300 years ago. Pumpkin pie has even sparked the interest of archaeologists as a product derived from merging three distinct cultures together. This favorite holiday dessert is a combination of ingredients from Native American, European and African cultures – pumpkin, pastry crust and allspice- and represents a cultural mixing referred to as “creolization” by New World Scholars. Pumpkin pie not only attracts archeologists around the world but kitchen scientists as well. You can enjoy this dessert on its own or with a dollop of whipped cream, but either way the light & flaky crust is crucial in producing a perfect pumpkin pie. Making the dough light & flaky all comes down to the scientific makeup of the pie dough. When making pastry dough, large amounts of fat are used to coat and separate the flour particles from each other. You then add just enough water to make a dough. Since much of the starch in the flour is not in contact with any of the water, the resulting cooked dough is crumbly and flaky. If the pastry that surrounds the pumpkin mixture is heavy or chewy then that can affect how much you enjoy this thanksgiving finale. This holiday, experiment with different fats & temperatures to see which gives your pumpkin pie the best texture & taste. Who knows, with the help of a little science, you just might become your family’s pie master!

For many families, Thanksgiving Day is marked by special foods — and endless leftovers. If you’re on kitchen duty this November, put these food science skills to use & become a kitchen chemist with experiments like these!

Science for Christmas!

Science is fun for the whole family. It can span the ages and intrigue the whole family. It will surprise you how well science gifts can be received, even grandfather’s and mothers in-law will like a science gift if you try giving science gifts this holiday season. With so many divisions of science, you ought to be able to find something that suits each person on your list–and sometimes, that hard-to-buy-for person can be the easiest one to buy a science gift for.

 

 

 

Science is fun for the whole family.  It can span the ages and intrigue the whole family.  It will surprise you how well science gifts can be received, even grandfather’s and mothers in-law will like a science gift if you try giving science gifts this holiday season.  With so many divisions of science, you ought to be able to find something that suits each person on your list–and sometimes, that hard-to-buy-for person can be the easiest one to buy a science gift for.

 

Why Science?

Science is SO important, and too many people feel intimidated by it. I’ve made it a personal mission to promote sciences to homeschoolers, to encourage them to observe and question the natural world around them, to tell them that science is nothing to fear.

So why is science so important? Simple. Because it is all around us in the natural world we live in, and our technology, too, is becoming more and more complex, and in order for us, as adults, to make informed decisions, we need a solid understanding of science in order to interpret the scientific messages we received day-in and day-out..

Many of us have known for a very long time that our children, here in America, are being left behind by the other children of the world, due to an education deficit all across the board, but no subjects so significant as math and science. Thank goodness we’re waking up to the call for reform. President Obama announced recently the need for increased attention to math and science education, national organizations like STEM, have been promoting science education, as well as some celebrities like Adam Savage of the popular show, Mythbusters. Including science in your holiday gift-giving will help to get the ball rolling, but science is for every-day, and should be incorporated as a natural part of yours and your child’s lives.

Learn the many sub-divisions of Science & get great gift ideas for the science lover in your family in this great article Science For Christmas!  

FUN Science with Halloween Candy!

Check out our updated list of spooky science Halloween Activities here! 
Worried about having too much Halloween candy laying around? Here’s a little science you can do with your kids’ haul—or your own!

Chances are if you’ve got kids they’re going to want to go trick-or-treating. This means they’ll end up loaded with way more candy than you’d want them to actually eat. What could you do with the rest? Well, you could donate it, you could take it to a candy buyback program or you could do a little science with it! Here are a few ideas from Candyexperiments.com.

Lifesaver Lights
Here’s a simple one. Grab some wintergreen flavored Life Saver candies, stand in a dark room, face a mirror and chew them with your mouth open. You’ll see flashes of light that result from electrons in the candy; these are more easily visible thanks to the wintergreen flavoring.

 

 

Pop Rocks
Ever tried pouring some Pop Rocks into a glass of water? If you do, you’ll find that it’s a pretty effervescent experience.

 

 

 

Chocolate Bloom
By rapidly heating and cooling a piece of chocolate, you can gradually seperate it into its component parts. This results in white streaks and spirals called chocolate bloom. You can even still eat the chocolate once this is done—the texture might be a little unusual but it’s still perfectly edible!

 

Density Rainbow
Skittles are both delicious and colorful – here’s a way to really help that color shine. By using different quantities of various colored Skittles and the principle that sugar makes water more dense, you can create a liquid rainbow. This is one of the tougher experiments to try; make sure you pour the melted Skittles very slowly otherwise the different colors will just mix together.

 

Color Separation- Chromotography
Even if a piece of candy is only one color, that color can actually contain a variety of differently colored dyes. By dissolving candy coloring into water then slowly dripping that water down a piece of paper, it’s possible to see all those various colors. This is an easy experiment and the results are striking. Try it with brown M&Ms!

Want To Record Your Dreams?

 

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So I know I’m not the only one who has woken up after a good night sleep, gotten on with the day and later vaguely remembered dreaming about something cool or crazy, but couldn’t for the life of me remember what it was. Well, what if we could record our dreams and watch them back later on?

Very nice and friendly scientists from Berkeley University have recently started reconstructing imagery and video from people’s minds! Incredible! However, while the technology is still improving, you can see that the results are still a bit blurry and not quite cinema-worthy. I’ll explain why after you watch it:

So the researchers monitored the brainwave activity of three people who were watching YouTube videos from the inside of an MRI machine (they used some Hollywood trailers, of course). The information that was gathered from this analysis was then stored in voxels (3d-pixels), since the pictures were moving (like how they make animation).

The next step of the process was to analyse a few more YouTube videos to compare them to those watched by the researchers. 13-million seconds of videos were seen by the computer to build a potential database from which to reconstruct the original brain signals. The computer then picked 100 videos to combine to make the original videos again. The result is quite blurry and obviously not perfect, but it is apparent that the final video does in fact resemble the original!

The process works kind of like what you tried to do as a kid when you were fingerpainting your dog in primary school using only a few colours. You combined a bit of yellow and red to better resemble your orange dog, right? Well in this case the dog represents the original video, the colours represent the videos that the computers analysed and you are the painter. You mix the paint to recreate the image of the dog that you have in your mind!

Obviously the technology is not ready to make Inception a reality, but it looks like we’re on the way. It’s extremely exciting (even if it is a little unnerving); but I am quite excited for the day that I can relive my journeys around the world, flying like superman or just watching how dreams morph from one thing into another!.

What dreams will you be recording?