100% tevredenheidsgarantie Direct beschikbaar na je betaling Lees online óf als PDF Geen vaste maandelijkse kosten 4,6 TrustPilot
logo-home
Tentamen (uitwerkingen)

Chemistry Thermodynamics Exam #1 || Questions & Answers (Graded A+)

Beoordeling
-
Verkocht
-
Pagina's
8
Cijfer
A+
Geüpload op
21-05-2025
Geschreven in
2024/2025

total energy - ANSWER - sum of all forms of energy of a system (internal, kinetic, and potential) internal energy - ANSWER - molecular energy of a system, may exist in sensible, latent, chemical, and nuclear forms mechanical energy - ANSWER - form of energy that can be converted to mechanical work completely and directly by a mechanical device such as an ideal turbine ways that energy can cross boundary of a closed system - ANSWER - heat or work pure substance - ANSWER - substance that has a fixed chemical composition throughout exists in different phases depending on energy level compressed/subcooled liquid - ANSWER - liquid that is not about to vaporize superheated vapor - ANSWER - gas that is not about to condense; temperature and pressure are independent of each other saturation temperature and pressure - ANSWER - temperature/pressure that a substance changes phase at saturated liquid and vapor - ANSWER - during boiling process, both liquid and vapor coexist in equilibrium

Meer zien Lees minder
Instelling
AP Chemistry
Vak
AP Chemistry









Oeps! We kunnen je document nu niet laden. Probeer het nog eens of neem contact op met support.

Geschreven voor

Instelling
AP Chemistry
Vak
AP Chemistry

Documentinformatie

Geüpload op
21 mei 2025
Aantal pagina's
8
Geschreven in
2024/2025
Type
Tentamen (uitwerkingen)
Bevat
Vragen en antwoorden

Onderwerpen

Voorbeeld van de inhoud

Chemistry Thermodynamics Exam #1 ||
Questions & Answers (Graded A+)
total energy - ANSWER - sum of all forms of energy of a system (internal, kinetic, and
potential)

internal energy - ANSWER - molecular energy of a system, may exist in sensible, latent,
chemical, and nuclear forms

mechanical energy - ANSWER - form of energy that can be converted to mechanical
work completely and directly by a mechanical device such as an ideal turbine

ways that energy can cross boundary of a closed system - ANSWER - heat or work

pure substance - ANSWER - substance that has a fixed chemical composition
throughout

exists in different phases depending on energy level

compressed/subcooled liquid - ANSWER - liquid that is not about to vaporize

superheated vapor - ANSWER - gas that is not about to condense; temperature and
pressure are independent of each other

saturation temperature and pressure - ANSWER - temperature/pressure that a
substance changes phase at

saturated liquid and vapor - ANSWER - during boiling process, both liquid and vapor
coexist in equilibrium

pressure and temperature dependent on each other

in absence of compressed liquid data... - ANSWER - treat compressed liquid as a
saturated liquid at the given TEMPERATURE

critical point - ANSWER - state beyond which there is no distinct vaporization process

above this point, vapor and liquid are indistinguishable

triple line - ANSWER - all three phases of a substance coexist in equilibrium (triple line
is temperature and pressure)

latent heat of fusion - ANSWER - amount of energy absorbed during melting. It is the
equivalent to the amount of energy released during freezing.

, Latent heat of vaporization - ANSWER - The amount of energy absorbed during
vaporization (equivalent to the energy released during condensation).

Superheated vapor characteristics - ANSWER - Lower pressures at a given T, higher
temperatures at a given P, higher specific volume.

Compressed liquid characteristics - ANSWER - High pressures at a given T, lower
temperatures at a given P, lower specific volumes.

boundary work - ANSWER - work associated with expansion and compression of
substances

isolated system - ANSWER - when no mass, work or energy cross the boundary

mean free path - ANSWER - average distance travelled between collisions of two
molecules

extensive properties - ANSWER - properties that do depend on the amount of matter
present (varies directly with mass)
ex: mass, weight, volume, length, total internal energy

intensive properties - ANSWER - properties that do NOT depend on the amount of
matter present (independent of mass)
ex: color, odor, density, boiling point, melting/freezing, conductivity, hardness

1st Law of Thermodynamics - ANSWER - conservation of energy

energy is a thermodynamics property

2nd Law of Thermodynamics - ANSWER - energy has quality and quantity

actual processes occur in direction of decreasing quality

closed system - ANSWER - system has a fixed mass, no mass can enter or leave

heat and work can cross boundary of a closed system

open system - ANSWER - mass transfer occurs across boundary

thermodynamic equilibrium - ANSWER - maintains thermal, mechanical, phase, and
chemical equilibrium

quasi-static or quasi-equilibrium process - ANSWER - system is practically in
equilibrium at all times
$8.49
Krijg toegang tot het volledige document:

100% tevredenheidsgarantie
Direct beschikbaar na je betaling
Lees online óf als PDF
Geen vaste maandelijkse kosten

Maak kennis met de verkoper
Seller avatar
bretmax

Maak kennis met de verkoper

Seller avatar
bretmax Texas A&M University
Bekijk profiel
Volgen Je moet ingelogd zijn om studenten of vakken te kunnen volgen
Verkocht
0
Lid sinds
1 jaar
Aantal volgers
0
Documenten
199
Laatst verkocht
-

0.0

0 beoordelingen

5
0
4
0
3
0
2
0
1
0

Recent door jou bekeken

Waarom studenten kiezen voor Stuvia

Gemaakt door medestudenten, geverifieerd door reviews

Kwaliteit die je kunt vertrouwen: geschreven door studenten die slaagden en beoordeeld door anderen die dit document gebruikten.

Niet tevreden? Kies een ander document

Geen zorgen! Je kunt voor hetzelfde geld direct een ander document kiezen dat beter past bij wat je zoekt.

Betaal zoals je wilt, start meteen met leren

Geen abonnement, geen verplichtingen. Betaal zoals je gewend bent via iDeal of creditcard en download je PDF-document meteen.

Student with book image

“Gekocht, gedownload en geslaagd. Zo makkelijk kan het dus zijn.”

Alisha Student

Veelgestelde vragen