Which of the following statements are true of the quantity mass? List all that apply. The mass of an object is dependent upon the value of the acceleration of gravity. The standard metric unit of mass is the kilogram. Mass depends on how much stuff is present in an object. The mass of an object is variable and dependent upon its location. An object would have more mass on Mount Everest than the same object in the middle of Lake Michigan. People in Weight Watcher's are really concerned about their mass (they're mass watchers). The mass of an object can be measured in pounds. If all other variables are equal, then an object with a greater mass would have a more difficult time accelerating. If all other variables are equal, then it would require less exerted force to stop a less massive object than to stop a more massive object. The mass of an object is mathematically related to the weight of the object.

University Physics Volume 1
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Chapter1: Units And Measurement
Section: Chapter Questions
Problem 14P: The Scope and Scale of Physics Find the order of magnitude of the following physical quantities. (a)...
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Which of the following statements are true of the quantity mass? List all that apply.

  1. The mass of an object is dependent upon the value of the acceleration of gravity.
  2. The standard metric unit of mass is the kilogram.
  3. Mass depends on how much stuff is present in an object.
  4. The mass of an object is variable and dependent upon its location.
  5. An object would have more mass on Mount Everest than the same object in the middle of Lake Michigan.
  6. People in Weight Watcher's are really concerned about their mass (they're mass watchers).
  7. The mass of an object can be measured in pounds.
  8. If all other variables are equal, then an object with a greater mass would have a more difficult time accelerating.
  9. If all other variables are equal, then it would require less exerted force to stop a less massive object than to stop a more massive object.
  10. The mass of an object is mathematically related to the weight of the object.
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