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Anastaziya [24]
4 years ago
6

Technician A says that valve overlap is the number of crankshaft degrees that both valves are closed. Technician B says that val

ve overlap is the number of degrees that both valves are open. Who is​ right
Physics
1 answer:
Vadim26 [7]4 years ago
3 0

Answer: Technician B

Explanation: A valve overlap occurs when both the exhaust valve and the inlet valve are open at the same time.

It is also seen as the number of degrees at which both the inlet and exhaust valves are open.

Valve overlap helps in boosting the efficiency of the engine by taking advantage of the expelled pressure from the exhaust.

It is expressed mathematically in degrees of shaft rotation.

So, Technician B is very correct.

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The magnitude and direction of the velocity of the car at t = 8.00 s is v = 7,468 m / s and the vector direction = θ = 58,984°

<h3><em>Further explanation</em></h3>

In the coordinates of the two-dimensional plane (xy) there is a position vector of a point

You can write P as:

P = xi + yi

where i denotes the unit vector in the x and y directions

While the magnitude of the vector:

\large{\boxed{\bold{P~=~\sqrt{x^2~+~y^2}}}}

and its direction

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Likewise with the instantaneous speed which is a derivative of the position function of time

V =\frac{dP}{dt}

V ~=~\frac{dx}{dt}i~i~+\frac{dy}{dt}j

V = vx i + vy j

The velocity of the car as a function of time is given by v = [5.00 m / s - (0.0180 m / s²) t²] i + [2.00 m / s + (0.550 m / s²) t] j so that:

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vy = 2 + 0.55t j

So the instantaneous velocity at t = 8 s becomes:

vx = 5-0.0180.8²

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vy = 2+ 0.55.8

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So the velocity position vector becomes:

v = 3,848 i + 6.4 y

and the magnitude becomes:

v=\sqrt{3.848^2+6.4^2}

v = 7,468 m / s

While the velocity vector direction:

\theta~=~=arc~tan\frac{vy}{vx}

\theta~=~arc~tan~\frac{6.4}{3.848}

θ = 58,984

<h3><em>Learn more</em></h3>

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  • The reference here is the Great Depression
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