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Question 3 How is the dish soap similar to a phospholipid? It has a water-fearing head (hydrophobic end) and a water-loving (hydrophilic head)end. It has two water loving heads (hydrophilic end) It has two water fearing heads (hydrophobic end) It has a water -loving head (hydrophilic end)and a water-fearing (hydrophobic head) end

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Question 3
How is the dish soap similar to a phospholipid?
It has a water-fearing head (hydrophobic end) and a water-loving (hydrophilic head)end.
It has two water loving heads (hydrophilic end)
It has two water fearing heads (hydrophobic end)
It has a water -loving head (hydrophilic end)and a water-fearing (hydrophobic head) end

Question 3 How is the dish soap similar to a phospholipid? It has a water-fearing head (hydrophobic end) and a water-loving (hydrophilic head)end. It has two water loving heads (hydrophilic end) It has two water fearing heads (hydrophobic end) It has a water -loving head (hydrophilic end)and a water-fearing (hydrophobic head) end

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HarleyProfessional · Tutor for 6 years

Answer

A. It has a water-fearing head (hydrophobic end) and a water-loving (hydrophilic head) end.

Explain

Dish soap molecules, like phospholipids, have both hydrophilic (water-loving) and hydrophobic (water-fearing) ends. This amphipathic nature allows them to interact with both water and oils, making them effective in cleaning.
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