An object of unknown mass is suspended from a spring balance possessing a zero error of inside a lift on an unexplored planet. When the lift accelerates vertically upwards at , the spring balance displays a reading of . Simultaneously, an equal-arm beam balance calibrated with standard masses measures the mass of the object inside the accelerating lift to be . What is the local acceleration due to gravity on this planet and the true weight of the object when at rest on its surface?
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Cevap
The local acceleration due to gravity on the planet is and the true weight of the object at rest is .
The correct response identifies that an equal-arm beam balance measures invariant mass () because acceleration affects both balance pans equally. Subtracting the zero error from the scale reading yields a true apparent weight of . Applying Newton's second law in an upward accelerating lift gives , which yields , resulting in . The true weight at rest is therefore .
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Anahtar Kavram
Distinction between mass (measured by beam balance, frame-invariant) and weight (measured by spring balance, dependent on frame acceleration and zero error).
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