We’re breaking down Bernoulli’s Principle: what it really means, why “faster fluid = lower pressure” is incomplete, where engineers use it, and where it fails.
https://t.co/7n46zqhlSv
Check it out and let us know what we can improve.
#Engineering#FluidMechanics#Bernoulli#STEM
BJTs are usually taught as simple current-controlled devices. But that’s not the full story.
This video breaks down how bipolar junction transistors really work: https://t.co/QfUqEkjW3u
#Engineering#Electronics#Semiconductors#BJT#Transistors
Zener diodes regulate voltage by operating in reverse breakdown; something normal diodes are designed to avoid.
But how does that actually work? Check it out in our latest video.
🎥 https://t.co/fDFUFEz5sr
#Electronics#ElectricalEngineering
Most people use Zener diodes…
But very few understand what actually happens during reverse breakdown.
⚡ Zener vs Avalanche breakdown
⚡ The I-V curve explained
⚡ Why 5.6V Zeners are special
Learn more here: https://t.co/fDFUFEz5sr
#Electronics#ElectricalEngineering
Fe-based chemical looping upgrades the steam-iron process to deliver pure H₂, NH₃ & syngas while capturing CO₂. CLR variants (SR-CLC, CLR-A, CL-SMR) for low-emission fuel & chemical production ➡️ https://t.co/4HTTVftdP1 #ChemicalLooping#Hydrogen#CarbonCapture#CleanEnergy
@Columbia & @UCBerkeley researchers reveal unexpected water dynamics at oil interfaces. Prof. Wei Min (Columbia), @thg_lab (UC Berkeley), @lixuess , Dr. Allen LaCour, @NaixinQian , Joseph Heindel, Xiaoqi Lang & Ruoqi Zhao.
https://t.co/QjloQtueBD
#Innovation#Research
New Interview Alert! We sat down with Dr. Mahmoud Wagih, @BenjaminKing96 & Nikolas Bruce from @GlasgowUni to dive into their chip‐free wireless sensors; a sustainable, eco-friendly alternative to traditional RFID tech.
https://t.co/ddwcCk8kBj
#Sustainability#Innovation
A self-healing hydrogel that mimics human skin is here; combining stiffness, flexibility, and rapid repair. @AaltoUniversity & University of Bayreuth team.
https://t.co/eDI154dm9t
#Hydrogel#MaterialsScience#Innovation
Exciting breakthrough from @UofMaryland@UMD_CHBE ! Led by Asst. Profs @WoehlLab & Paul Albertus with Medha Rath, researchers triggered self-organising behaviour in microscopic particles using a constant electric current.
https://t.co/672KWBho63
#ActiveMatter#Innovation
Exciting breakthrough from @Northwestern! Prof. Franz Geiger @geiger_lab , along with Raiden Speelman and Ezra Marker, observed water molecules flipping before oxygen formation. This insight could boost clean hydrogen production.
https://t.co/LZexoy5RjN
#CleanEnergy#Hydrogen