Figure 14.2a shows the Hope diamond (44.5 carats), which is almost pure carbon. Figure 14.2b shows the Rosser Reeves ruby (138 carats), which is primarily aluminum oxide (Al2O3). One carat is equivalent to a mass of 0.200 g. Determine (a) the number of carbon atoms in the diamond and (b) the number of Al2O3 molecules in the ruby.
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Question
In outer space the density of matter is extremely low, about one atom per cm3 . The matter is mainly hydrogen atoms (m 1.67 1027 kg) whose rms speed is 260 m/s. A cubical box, 2.0 m on a side, is placed in outer space, and the hydrogen atoms are allowed to enter. (a) What is the magnitude of the force that the atoms exert on one wall of the box? (b) Determine the pressure that the atoms exert. (c) Does outer space have a temperature, and, if so, what is it?
Solution
The first step in solving 14 problem number 31 trying to solve the problem we have to refer to the textbook question: In outer space the density of matter is extremely low, about one atom per cm3 . The matter is mainly hydrogen atoms (m 1.67 1027 kg) whose rms speed is 260 m/s. A cubical box, 2.0 m on a side, is placed in outer space, and the hydrogen atoms are allowed to enter. (a) What is the magnitude of the force that the atoms exert on one wall of the box? (b) Determine the pressure that the atoms exert. (c) Does outer space have a temperature, and, if so, what is it?
From the textbook chapter The Ideal Gas Law and Kinetic Theory you will find a few key concepts needed to solve this.
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