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In the text, it was shown that N / V = 2 . 68 × 10 25 m 3 size 12{N/V=2 "." "68" times "10" rSup { size 8{"25"} } `m rSup { size 8{ - 3} } } {} for gas at STP. (a) Show that this quantity is equivalent to N / V = 2 . 68 × 10 19 cm 3 , size 12{N/V=2 "." "68" times "10" rSup { size 8{"19"} } `"cm" rSup { size 8{ - 3} } ,} {} as stated. (b) About how many atoms are there in one μm 3 size 12{"μm" rSup { size 8{3} } } {} (a cubic micrometer) at STP? (c) What does your answer to part (b) imply about the separation of atoms and molecules?

Calculate the number of moles in the 2.00-L volume of air in the lungs of the average person. Note that the air is at 37 . 0 º C size 12{"37" "." 0°C} {} (body temperature).

7 . 86 × 10 2 mol size 12{7 "." "86" times "10" rSup { size 8{ - 2} } `"mol"} {}

An airplane passenger has 100 cm 3 size 12{"100"" cm" rSup { size 8{3} } } {} of air in his stomach just before the plane takes off from a sea-level airport. What volume will the air have at cruising altitude if cabin pressure drops to 7 . 50 × 10 4 N/m 2 ? size 12{7 "." "50"´"10" rSup { size 8{4} } " N/m" rSup { size 8{2} } } {}

(a) What is the volume (in km 3 size 12{"km" rSup { size 8{3} } } {} ) of Avogadro’s number of sand grains if each grain is a cube and has sides that are 1.0 mm long? (b) How many kilometers of beaches in length would this cover if the beach averages 100 m in width and 10.0 m in depth? Neglect air spaces between grains.

(a) 6 . 02 × 10 5 km 3 size 12{6 "." "02" times "10" rSup { size 8{5} } `"km" rSup { size 8{3} } } {}

(b) 6 . 02 × 10 8 km size 12{6 "." "02" times "10" rSup { size 8{8} } `"km"} {}

An expensive vacuum system can achieve a pressure as low as 1 . 00 × 10 7 N/m 2 size 12{1 "." "00"´"10" rSup { size 8{ +- 7} } " N/m" rSup { size 8{2} } } {} at 20 º C size 12{"20"°C} {} . How many atoms are there in a cubic centimeter at this pressure and temperature?

The number density of gas atoms at a certain location in the space above our planet is about 1 . 00 × 10 11 m 3 , size 12{1 "." "00" times "10" rSup { size 8{"11"} } `m rSup { size 8{ - 3} } ,} {} and the pressure is 2 . 75 × 10 10 N/m 2 size 12{2 "." "75"´"10" rSup { size 8{ +- "10"} } " N/m" rSup { size 8{2} } } {} in this space. What is the temperature there?

73 . 9 º C size 12{ - "73" "." 9°C} {}

A bicycle tire has a pressure of 7 . 00 × 10 5 N/m 2 size 12{7 "." "00"´"10" rSup { size 8{5} } " N/m" rSup { size 8{2} } } {} at a temperature of 18 . 0 º C size 12{"18" "." 0°C} {} and contains 2.00 L of gas. What will its pressure be if you let out an amount of air that has a volume of 100 cm 3 size 12{"100"" cm" rSup { size 8{3} } } {} at atmospheric pressure? Assume tire temperature and volume remain constant.

A high-pressure gas cylinder contains 50.0 L of toxic gas at a pressure of 1 . 40 × 10 7 N/m 2 size 12{1 "." "40"´"10" rSup { size 8{7} } " N/m" rSup { size 8{2} } } {} and a temperature of 25 . 0 º C size 12{"25" "." 0°C} {} . Its valve leaks after the cylinder is dropped. The cylinder is cooled to dry ice temperature ( 78 . 5 º C ) size 12{ \( –"78" "." 5°C \) } {} to reduce the leak rate and pressure so that it can be safely repaired. (a) What is the final pressure in the tank, assuming a negligible amount of gas leaks while being cooled and that there is no phase change? (b) What is the final pressure if one-tenth of the gas escapes? (c) To what temperature must the tank be cooled to reduce the pressure to 1.00 atm (assuming the gas does not change phase and that there is no leakage during cooling)? (d) Does cooling the tank appear to be a practical solution?

(a) 9 . 14 × 10 6 N/m 2 size 12{9 "." "14" times "10" rSup { size 8{7} } `"N/m" rSup { size 8{2} } } {}

(b) 8 . 23 × 10 6 N/m 2 size 12{8 "." "23" times "10" rSup { size 8{7} } `"N/m" rSup { size 8{2} } } {}

(c) 2.16 K

(d) No. The final temperature needed is much too low to be easily achieved for a large object.

Find the number of moles in 2.00 L of gas at 35 . 0 º C size 12{"35" "." 0°C} {} and under 7 . 41 × 10 7 N/m 2 size 12{7 "." "41"´"10" rSup { size 8{7} } " N/m" rSup { size 8{2} } } {} of pressure.

Calculate the depth to which Avogadro’s number of table tennis balls would cover Earth. Each ball has a diameter of 3.75 cm. Assume the space between balls adds an extra 25.0% to their volume and assume they are not crushed by their own weight.

41 km

(a) What is the gauge pressure in a 25 . 0 º C size 12{"25" "." 0°C} {} car tire containing 3.60 mol of gas in a 30.0 L volume? (b) What will its gauge pressure be if you add 1.00 L of gas originally at atmospheric pressure and 25 . 0 º C size 12{"25" "." 0°C} {} ? Assume the temperature returns to 25 . 0 º C size 12{"25" "." 0°C} {} and the volume remains constant.

(a) In the deep space between galaxies, the density of atoms is as low as 10 6 atoms/m 3 , size 12{"10" rSup { size 8{6} } " atoms/m" rSup { size 8{3} } ,} {} and the temperature is a frigid 2.7 K. What is the pressure? (b) What volume (in m 3 size 12{m rSup { size 8{3} } } {} ) is occupied by 1 mol of gas? (c) If this volume is a cube, what is the length of its sides in kilometers?

(a) 3 . 7 × 10 17 Pa size 12{3 "." 7 times "10" rSup { size 8{ - "17"} } `"Pa"} {}

(b) 6 . 0 × 10 17 m 3 size 12{6 "." 0 times "10" rSup { size 8{"17"} } `m rSup { size 8{3} } } {}

(c) 8 . 4 × 10 2 km size 12{8 "." 4 times "10" rSup { size 8{2} } `"km"} {}

Questions & Answers

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Communication is effective because it allows individuals to share ideas, thoughts, and information with others.
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Every time someone flushes a toilet in the apartment building, the person begins to jumb back automatically after hearing the flush, before the water temperature changes. Identify the types of learning, if it is classical conditioning identify the NS, UCS, CS and CR. If it is operant conditioning, identify the type of consequence positive reinforcement, negative reinforcement or punishment
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Wekolamo
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Skinner skipped the whole unconscious phenomenon and rather emphasized on classical conditioning
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Saurabh
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Jharna
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Source:  OpenStax, Concepts of physics. OpenStax CNX. Aug 25, 2015 Download for free at https://legacy.cnx.org/content/col11738/1.5
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