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living clean up https://www.youtube.com/watch?v=89ypbclpv4w 1. what is …

Question

living clean up
https://www.youtube.com/watch?v=89ypbclpv4w

  1. what is the equation for photosynthesis?
  1. what are scientists trying to get bacteria to produce?
  2. what is the waste product of burning hydrogen?
  1. how much wastewater does the us process each day?
  1. what two items did scientists 3d print on to mushrooms to improve their effectiveness?
  2. what have we already created that tries to mimic a plant?

Explanation:

Brief Explanations

These questions are related to scientific concepts like photosynthesis (biology), hydrogen burning (chemistry), wastewater processing (environmental science), and biomimicry/3D printing in science. The subfield of Natural Science, specifically Biology, Chemistry, and Environmental Sciences, is relevant. To answer, one would need to refer to the provided YouTube video or scientific knowledge:

  1. The equation for photosynthesis is \( 6CO_2 + 6H_2O \xrightarrow[\text{Chlorophyll}]{\text{Sunlight}} C_6H_{12}O_6 + 6O_2 \) (carbon dioxide + water + light energy → glucose + oxygen).
  2. Scientists are often trying to get bacteria to produce useful compounds like biofuels, bioplastics, or other biochemicals (exact answer depends on the video, but common goals include renewable energy or materials).
  3. The waste product of burning hydrogen is water (\( 2H_2 + O_2

ightarrow 2H_2O \)), so \( H_2O \) (water) is the waste (though it's a clean byproduct).

  1. The US processes a large volume of wastewater daily; exact figures (e.g., billions of gallons) would come from the video or environmental data.
  2. The video likely mentions 3D - printed items on mushrooms, such as electrodes or catalysts (exact items from the video).
  3. We've created artificial photosynthetic systems or solar - to - fuel devices that mimic plants' ability to convert light energy (exact example from the video).

Answer:

  1. The equation for photosynthesis is \( 6CO_2 + 6H_2O \xrightarrow[\text{Chlorophyll}]{\text{Sunlight}} C_6H_{12}O_6 + 6O_2 \)
  2. (Depends on video, e.g., biofuels, bioplastics)
  3. Water (\( H_2O \))
  4. (Depends on video, e.g., billions of gallons)
  5. (Depends on video, e.g., electrodes and catalysts)
  6. (Depends on video, e.g., artificial photosynthetic systems)