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dalvyx [7]
2 years ago
3

Using a voltmeter to check coolant, you measure a reading of 0.2 volt with the engine off. You then measure a reading of 0.8 vol

t with the engine running and all electrical accessories turned on. Technician A says that the coolant should be flushed to solve the galvanic activity. Technician B says that the ground wires and connections should be inspected and repaired to solve the electrolysis problem. Who is correct? A. Both Technicians A and B B. Neither Technician A nor B C. Technician B D. Technician A
Physics
2 answers:
s344n2d4d5 [400]2 years ago
8 0
<h2>Answer:</h2>

<u>Both A and B are correct</u>

<h2>Explanation:</h2>

The battery of a car works on the electrolysis phenomenon. There is an electrolyte present in the battery of the car. That battery is connected by wires to the appliances such as lights and engine. If there exist a difference in the voltage then it probably be the problem of electrolyte inside the battery. If water inside the coolant is very impure and contains impurities then ionization process is disturbed. Similarly if wire ends are rusted then they may also produce malfunctioning with battery. Therefore both A and B re correct.

velikii [3]2 years ago
5 0
A both would be correct write
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Answer:

Explanation:

Let v be the linear velocity ,  ω be the angular velocity  and I be the moment of inertia of the the puck.

Kinetic energy ( linear ) = 1/2 mv²

Rotational kinetic energy = 1/2 I ω²

I = 1/2 m r² ( m and r be the mass and radius of the puck )

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2 years ago
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Explanation:

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2 years ago
Some plants disperse their seeds when the fruit splits and contracts, propelling the seeds through the air. The trajectory of th
Anton [14]

Answer:

Option B, 93 cm

Explanation:

An diagram of the seed's motion is attached to this solution.

This is very close to a projectile motion question. And the quantity to be calculated, how far along the grant a seed released would travel is called the Range.

And this would be obtained from the equations of motion,

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(substituting the t = √(2H/g) derived from above

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R = 4.6 √(2×0.2/9.8) = 0.929 m = 0.93 m = 93 cm. Option B.

QED!

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