Typical upper solid profile of a Fulda soil
From Field Indicators of Hydric Soils in the United States 2024

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Typical upper solid profile of a Fulda soil
From Field Indicators of Hydric Soils in the United States 2024

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studying environmental science is great because sometimes you get to sit in a lecture hall for an hour and listen to a man rant passionately about soil and how no one cares enough about soil and how important soil is to literally everything we rely on to survive and you start to feel guilty about not appreciating soil enough
anyways guys did you know that we lose 24 billion tonnes of fertile soil every year to erosion, runoff, pollution, rising sea levels, and degradation? and that it takes 200 years to form one centimeter of topsoil? soil is essentially a nonrenewable resource that we are losing faster than trees and we literally need it to grow all of the food we eat. without soil society would collapse and we would all die.
take some time today to appreciate soil. do it for my sustainable agro-ecosystems professor.
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I have some new hard enamel pins available in my Etsy shop! A soils color chart and the soils pyramid! There is also a combo pack where you can pick which color triangle and soils chart you want together.
Show everyone how much you love dirt today.
SOIL POLL
sand
silt
clay
vote for one and when this poll closes we will see what we make!

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a few shots from my soil lab 🌱🔬
Why your neurons love a good beat. How music rewires aging minds.
Disclaimer: Equal to my love of science is my love of music. In fact, I was already undecided about what career path to take when I started playing the drums at the age of 13. I chose science but continued playing the drums, timpani, along with other percussion instruments until my early 30s. Today, as a scientist, I'm discovering how beneficial the pursuit of a musical instrument is for the mind. For decades, scientists suspected that music helped the brain, but now randomized controlled trials, brain scan studies & meta-analyses show measurable improvements in memory, attention, processing speed & mood while reducing stress by reducing cortisol (stress hormone) & increasing dopamine (reward chemical). It also helps with the brain's "executive function," which is your brain's management system—the "CEO" of your thinking. This includes planning, decision-making, task switching, working memory & helps resist impulses (self-control).
Drumming is a physical workout (take my word on it). It's a full-body workout that, when done vigorously, elevates heart rate & breathing & makes you sweat. It raises heart rate to 90-140 beats/min (normal exercise range). That's 1.5-2.3x resting heart rate. This releases brain-derived neurotrophic factor, which is like fertilizer for brain cells. It helps neurons grow stronger connections, it protects them from damage, & it supports neuroplasticity (the brain's ability to rewire itself). Fast drumming can burn 200-400 calories/hour (about 840-1,680 kJ/hr) depending on intensity. Drumming involves the arms, legs & core body.
It requires rhythm, timing, memory, coordination (having to move hands & feet in separate rhythms & sequences), & it requires attention. In a small randomized study of 40 adults over age 55, participants did 4 weeks of drumming & memory exercises. They all got faster & more accurate on cognitive tests, and they had increased hemoglobin (Hgb) in the left orbitofrontal cortex.
This was crucial because the left orbitofrontal cortex received more oxygenated blood, which improved decision-making & increased motivation. This region declines with age & is affected by some forms of dementia, so seeing increased oxygenation there suggests drumming may help keep it more active & healthier. Cognitive reserve is the brain's ability to stay functional even when aging or disease causes physical changes. Music—especially playing an instrument—doesn't have to be drums; it helps build this reserve by strengthening neural networks, improving blood flow, enhancing memory pathways & encouraging neuroplasticity. This is why musicians often show slower cognitive decline in older age.
It turns out that many famous scientists were also musicians. Here's the list: Albert Einstein—violin & piano. He practiced violin every day & said it helped him think. He often worked through physics problems by improvising & famously once said, "If I were not a physicist, I would probably be a musician." He often solved problems by imagining patterns as musical structures. The famous Russian composer Alexander Borodin was also a scientist & chemist whose work on aldehydes, a volatile organic chemical, led to the modern development of the cholesterol-lowering drug Lipitor. He divided his time with dashes between the lab & the piano, producing symphonies, chamber music, & songs, some of which became a Tony Award winner for Kismet.
Then there was the "father of quantum mechanics," Werner Heisenberg, who was also a concert-level pianist. Richard Feynman was a physicist & a passionate bongoist & drummer performing in samba bands. Perhaps many of you remember the song "We Will Rock You" performed by Queen & Bohemian Rhapsody. Well, the guitarist & songwriter Brian May of Queen was also an astrophysicist.
One of the greatest mathematicians of all time, Henri Poincaré, laid the foundations of modern chaos theory. Chaos theory is the study of systems governed by rules & patterns, yet small differences in starting patterns can lead to vastly different outcomes over time—a phenomenon called the "butterfly effect"—for example, a butterfly flapping its wings could theoretically influence the weather somewhere else. Poincaré was also a pianist who used musical structure to think about patterns. Santiago Ramón y Cajal, the "father of modern neuroscience," played the violin & wrote about the mental clarity it gave him. He received the Nobel Prize in Physiology or Medicine for establishing the neuron as the basic unit of the nervous system.
Max Planck, founder of quantum theory, nearly pursued music professionally, playing the organ & piano. Niels Bohr, a Danish physicist, was the first to apply quantum concepts to atomic & molecular structure, earning him a Nobel Prize in Physics in 1922 through his model of the atom with electrons occupying specific orbits around its nucleus. He was an accomplished pianist who believed music helped him understand abstract concepts. Charles Darwin played the flute, & even though he had a self-confessed lack of musicality, that did not prevent music from influencing his work, including playing the piano & the flute to attract worms.
Darwin discovered that earthworms cannot hear music the way humans can (duh), but they can feel vibrations, helping earthworms to know what is happening around them. The worms reacted, moved, changed posture & retreated or emerged, perhaps sliding away from his dreadful playing. The experiment showed that worms use vibrations to avoid predators & find food. After his flute experiment, he said, "It may be doubted whether there are many other animals other than earthworms that have played so important a part in the history of the world."
The last scientist that comes to mind is Marie Curie, the first woman to win a Nobel Prize, the first person to win a Nobel Prize twice, the only person to win a Nobel Prize in two scientific fields, and the first woman to become a professor at the University of Paris. Curie discovered polonium & radium (two elements), & she developed the theory of "radioactivity," a term she actually coined. But she was also an accomplished pianist who could play Chopin waltzes & Bach preludes & fugues at 10. She was not a virtuoso but played competently throughout her life.
Music helped all of these scientists to become great—not because music magically creates genius, but because music trains the brain in ways that directly support scientific thinking. And that is the promise of drum lessons in later life: a way to keep the brain active, challenged, & alive to new experiences. The value in drumming may not be in keeping perfect time (nor is it in giving your parents a good headache), but in refusing to let time end the possibility of learning.
Essay on: Soul Sand Composition, Nether Energy Cycles, and Dimensional Space-Time Warping in Minecraft.
hey guys. I'm being an autistic biologist about minecraft again....
Texture and structure
The three principle minecraft lore assumptions are as follows: First, the Nether was blatantly oceanic and/or cooler in the deep deep past, as evidenced by the prevalence of basalt which can only form when lava cools, enormous sand banks, and hydratable jellyfish-like ghasts. Second, that Minecraft souls are analogous to heat and will constantly be compared to energy cycling (consumption, magic, heat loss). Finally, I consider the Nether a closed-loop system with minimal energy inputs/outputs, and the perpetual heat output of lava is due to drawing from soul energy sequestered in soul sand banks.
Soul sand. SAND. It’s about percolation baby! Due to grain size and porosity, the souls can quickly percolate into the soul sand and become sequestered. I assume souls take a very long time to percolate if soils of different textures such as clay or silt have minimal sequestration. (This will be returned to). Furthermore, soul sand banks are where all that juicy organic matter from the oceans accumulated in massive banks of necro-mass/souls. Side note the giant skeletons were nether equivalent whale falls.
Now, the very evident high organic matter in soul sand would drastically affect the structure of the soil. But would you look at that. In sandy soils, organic matter aggregates increase water and nutrient retention. Only further increasing their soul/Organic matter sequestration!
Anyway at this point I started considering soul sand similar to histosols. Similar color, pluuuuuuuus:
Hmm. That is shareing quite a lot of the characteristics we theoriezed about, doesn't it?
Anyway, I'm putting a read more line here. Click if you want to read the following sections: Vegetation ||| Nether Decomposition ||| Nom Proceeds to Lose Their Mind About Coal Formation ||| The Dimensional Warp of Space, and thus Time, in Minecraft Dimensions (which explains the coal problem, and invents several new ones) ||| The Apocalypse