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(a)
Interpretation:
The reason for the crumble and explosion doesn't occur, when water is heated to boiling with the removed lid should be explained and explanation must include the effect on gas molecules inside the can
Concept Introduction:
Ideal gas equation and kinetic gas theory explain the behaviour of ideal gases. The ideal gas equation is; PV = nRT
Kinetic gas theory states that ideal gas is composed of small particles with no molecular force. The particles of gas colloid with each other and gas exert the force on the walls of the container known as gas pressure. When gas particles condense they come close to each other and changes to liquid.
(b)
Interpretation:
The reason for the crumple of can occurs, when the heat is turned off and the can is sealed should be determined by using kinetic molecular theory.
Concept Introduction:
Ideal gas equation and kinetic gas theory explain the behaviour of ideal gases. The ideal gas equation is; PV = nRT
Kinetic gas theory states that ideal gas is composed of small particles with no molecular force. The particles of gas colloid with each other and gas exert the force on the walls of the container known as gas pressure. When gas particles condense they come close to each other and changes to liquid.
(c)
Interpretation:
The number of moles of water vapor is (are) in the can right when the can is sealed should be calculated.
Concept Introduction:
Ideal gas equation and kinetic gas theory explain the behaviour of ideal gases. The ideal gas equation is; PV = nRT
Kinetic gas theory states that ideal gas is composed of small particles with no molecular force. The particles of gas colloid with each other and gas exert the force on the walls of the container known as gas pressure. When gas particles condense they come close to each other and changes to liquid.
The ideal gas equation is used to calculate the moles of gas vapour with the help of given pressure, temperature and volume.
(d)
Interpretation:
The mass of water condensed from the time the can was sealed to completing its crushing process should be calculated.
Concept Introduction:
Ideal gas equation and kinetic gas theory explain the behaviour of ideal gases. The ideal gas equation is; PV = nRT
Kinetic gas theory states that ideal gas is composed of small particles with no molecular force. The particles of gas colloid with each other and gas exert the force on the walls of the container known as gas pressure. When gas particles condense they come close to each other and changes to liquid.
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Chapter 13 Solutions
Student Solutions Manual for Zumdahl/DeCoste's Introductory Chemistry: A Foundation, 9th
- Classify each molecule as optically active or inactive. Determine the configuration at each H соон Chirality center OH 애 He OH H3C Ноос H H COOH A K B.arrow_forwardQ1: Rank the relative nucleophilicity of the following species in ethanol. CH3O¯, CH3OH, CH3COO, CH3COOH, CH3S Q2: Group these solvents into either protic solvents or aprotic solvents. Acetonitrile (CH3CN), H₂O, Acetic acid (CH3COOH), Acetone (CH3COCH3), CH3CH2OH, DMSO (CH3SOCH3), DMF (HCON(CH3)2), CH3OHarrow_forwardDon't used hand raiting and don't used Ai solutionarrow_forward
- 10. The main product of the following reaction is [1.1:4',1"-terphenyl]-2'-yl(1h-pyrazol-4- yl)methanone Ph N-H Pharrow_forwardDraw the Fischer projection for a D-aldo-pentose. (aldehyde pentose). How many total stereoisomers are there? Name the sugar you drew. Draw the Fischer projection for a L-keto-hexose. (ketone pentose). How many total stereoisomers are there? Draw the enantiomer.arrow_forwardDraw a structure using wedges and dashes for the following compound: H- Et OH HO- H H- Me OHarrow_forward
- Which of the following molecules are NOT typical carbohydrates? For the molecules that are carbohydrates, label them as an aldose or ketose. HO Он ОН ОН Он ОН но ΤΗ HO ОН HO eve Он он ОН ОН ОН If polyethylene has an average molecular weight of 25,000 g/mol, how many repeat units are present?arrow_forwardDraw the a-anomer cyclized pyranose Haworth projection of the below hexose. Circle the anomeric carbons. Number the carbons on the Fischer and Haworth projections. Assign R and S for each chiral center. HO CHO -H HO -H H- -OH H -OH CH₂OH Draw the ẞ-anomer cyclized furanose Haworth projection for the below hexose. Circle the anomeric carbons. Number the carbons on the Fischer and Haworth projections. HO CHO -H H -OH HO -H H -OH CH₂OHarrow_forwardName the below disaccharide. Circle any hemiacetals. Identify the numbering of glycosidic linkage, and identify it as a or ẞ. OH HO HO OH HO HO HO OHarrow_forward
- What are the monomers used to make the following polymers? F. а. b. с. d. Вецер хочому なarrow_forward1. Propose a reasonable mechanism for the following transformation. I'm looking for curved mechanistic arrows and appropriate formal charges on intermediates. OMe MeO OMe Me2N NMe2 OTBS OH xylenes OMe 'OTBSarrow_forwardWhat is the polymer made from the following monomers? What type of polymerization is used for each? а. ОН H2N но b. ن -NH2 d. H₂N NH2 довarrow_forward
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