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vladimir2022 [97]
2 years ago
13

A person is rowing across the river with a velocity of 4.5 km/hr northward. The river is flowing eastward at 3.5 km/hr (Figure 4

). What is the magnitude of her velocity ( v ) with respect to the shore?

Physics
1 answer:
zhannawk [14.2K]2 years ago
8 0

Answer: The magnitude of her velocity ( v ) with respect to the shore is 5.70 km/h.

Explanation:

Magnitude of  Velocity of the boat = Q

Magnitude of Velocity of the river flowing = P

R = Resultant velocity due to velocity of boat and velocity of river.

Applying Law of triangles of  vector addition :

R=\sqrt{P^2+Q^2+2PQCos\theta}

From the figure attached:

P = 3.5 k/h, Q = 4.5 km/h

\theta= 90^o

R=\sqrt{P^2+Q^2+2PQCos\theta}=\sqrt{(3.5)^2+(4.5)^2+3.5\times 4.5\times cos90^o}=5.70

(Cos90^o=0),(sin 90^o=1)

\alpha =tan^{-1}\frac{Qsin\theta}{P+Qcos\theta}=tan^{-1}\frac{4.5 sin 90^o}{3.5+4.5 cos90^o}=tan^{-1}\frac{4.5}{3.5}=52.12^o

The magnitude of her velocity ( v ) with respect to the shore is 5.70 km/h.

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Answer:

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Explanation:

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Bold indicate vectors

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    N = mg cos 60

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      θ = 60 + 90 = 150

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c) The work of the friction force

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2 years ago
A graduated cylinder contains 17.5 ml of water. When a metal cube is placed onto the cylinder, its water level rises to 20.3 ml
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Answer:

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d = 6,371,000 m (radius of Earth)
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F = ( 6.67408 × 10⁻¹¹ m³ kg⁻¹ s⁻²)(60 kg)(5.972×10²⁴ kg)/(6,371,000 m )²
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Ratio = 0.356  N/589.18 N
<em>Ratio = 6.04</em>
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2 years ago
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