Gauss’ Law for Electric Fields quantifies the electric field vector perpendicular to an increment of a closed surface electric field as the net charge enclosed by the aforementioned surface divided by its permittivity. Gauss’s Law is a derivation of one of Maxwell’s principals and simplifies evaluations of flux passing through a closed surface as proportional to the total charge of that surface.
Carl Friedrich Gauss was a German mathematician who is often held as one history’s greatest mathematicians. From child prodigy to death, Gauss contributed to math, science, and literature. One of his greatest contributions is in the field of electrodynamics for explaining charges’ relation to it’s electric field. What is now called Gauss’ Flux Equation or Gauss’ Law quantifies the electric field vector perpendicular to an increment of a closed surface electric field as the net charge enclosed by the aforementioned surface divided by its permittivity. Gauss’s Law is a derivation of one of Maxwell’s principals and simplifies evaluations of flux passing through a closed surface as proportional to the total charge of that surface.
Guest Author
Taylor Sang, with degrees in Economics and Civil Engineering, is a woman in STEM and proponent of making STEM fields more accessible to women, people of color, and low-income households. When Taylor isn’t working, she teaches STEM classes at a Louisville, Kentucky charter school, trains for marathons, and plays with her dogs, Biscuit and Boba.
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Her go-to tee fits like a well-loved favorite, featuring a slim feminine fit. Additionally, it is really comfortable – an item to fall in love with.
.: Slim fit with longer body length
.: 100% Soft cotton (fibre content may vary for different colors)
.: Light fabric (4.2 oz/yd² (142 g/m²))
.: Sewn in label
.: Runs smaller than usual
| S | M | L | XL | 2XL |
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Width, in | 15.99 | 16.74 | 17.76 | 18.75 | 19.77 |
Length, in | 26.26 | 26.74 | 27.37 | 28 | 28.63 |
Sleeve length, in | 5.04 | 5.28 | 5.52 | 5.75 | 5.99 |
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