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Explain why (a). The blood pressure in...

Explain why
(a). The blood pressure in humans is greater at the feet than at the brain
(b). Atmospheric pressure at a height of about 6 km decreases to nearly half of its value at the sea level, through the height of the atmosphere is more than 100 km
(c). Hydrostatic pressure is a scalar quantity even though pressure is force divided by area.

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Atmospheric pressure at aheight of about 6km decreases to nearly half of its value at the sea level , though the height of the atmosphere is more than 100 km .

Explain why (a) the blood pressure is humans is greater at the feet than at the brain. (b) Atmospheric pressure at a height of about 6 km decreases to nearly half its value at the sea level through the 'height' of the atmospheric is more than 100 km. (c) Hydrostatic pressure is a scalar quantity even though pressure is force divided by area , and force is a vector.

Explain why (a) the blood pressure is humans is greater at the feet than at the brain. (b) Atmospheric pressure at a height of about 6 km decreases to nearly half its value at the sea level through the 'height' of the atmospheric is more than 100 km. (c) Hydrostatic pressure is a scalar quantity even though pressure is force divded by area , and force is a vector.

Explain why Atmospheric pressure at a height of about 6 km decreases to nearly half of its value at the sea level, though the height of the atmosphere is more than 100 km

Explain why Atmospheric pressure at a height of about 6 km decreases to nearly half of its value at the sea level, though the height of the atmosphere is more than 100 km

Explain why Atmospheric pressure at a height of about 6km decreases to nearly half to its value at the sea level, through the height of the atmospheric is more than 100 km.

Explain why Atmospheric pressure at a height of about 6km decreases to nearly half to its value at the sea level, through the height of the atmospheric is more than 100 km.