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Chem 131-01 Secure | Post Lecture Homework Chapter 01 Mass versus Weight httpsl/

ID: 577717 • Letter: C

Question

Chem 131-01 Secure | Post Lecture Homework Chapter 01 Mass versus Weight httpsl/Isession.masteringchemistry.com/myct/itemView2assignmentProblemiD- 97886544Boffsetsnext ) 100124 (> Constants Parlodie TableThe foloving tabe liets the force of gravity at various locaionsin the solar system relalive to the force of gravity on Earth Mass (m) is defined as the amount of material in an object. The SI base unit of mass is the kilogram, kg Weight (W) is the force that the mass exerts |Force of gravity (relative to Earth) 1.00 Celestial location Earth Interplanetary space Jupiter Mars Earth's moon due to gravity (g). Weight is directly proportional to mass as shown by the equation Weight is measured in force units such as newtons N, or pounds, Ib. Thus, g has units of weight per mass. On Earth, g is equal to 9.81 N/kg or 1.00 lb/lb. Note that pounds can measure both weight and mass 2 36 0.380 0 170 Refers to a position between planets where gravitational atraction is negligible, Weight varies directly with the force of gravity axerted on the object and will be different at various locations in the solar system Each planet exerts a certain gravitational force, and the weight of an object on that planet will vary directly with the Part A An object with a mass of 205 kg was weighed at each of the celestial locations given in the table Rank these locations by the weight of the object at that location Rank from heaviest to lightest weight measured for each location. To rank items as equivalent, overlap them. View Available Hint(s) magnitude of this force. Mass however is constant because it does not depend on gravity Reset Help

Explanation / Answer

Part A:

As weight is proportional to force of gravity the order of weight is : interplanetary space < earth'E moon < mars < Earth < jupiter.

Part B :

205 kg = 205 kg x(2.36 lb/ kg)= 483.8 lb

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