Christy–Hirschfelder approximation

GPTKB entity

Statements (64)
Predicate Object
gptkbp:instanceOf approximation method
gptkbp:appliesTo gas mixtures
gptkbp:developedBy Hirschfelder
Christy
https://www.w3.org/2000/01/rdf-schema#label Christy–Hirschfelder approximation
gptkbp:isAccessibleBy non-ideal gases
gptkbp:isAssociatedWith thermodynamic equations
Christy_and_Hirschfelder
gptkbp:isAvenueFor chemical processes
industrial processes
energy systems
chemical reaction engineering
gptkbp:isBasedOn equation of state
gptkbp:isCitedIn research articles
scientific papers
gptkbp:isConsidered fluid dynamics
reaction engineering
engineering curricula
gptkbp:isEvaluatedBy performance
accuracy and reliability
gptkbp:isExaminedBy research studies
peer-reviewed journals
academic conferences
gptkbp:isInfluencedBy academic research
thermodynamic education
van_der_Waals_equation
gptkbp:isNotedFor its predictive capabilities
accuracy in predictions
its contributions to thermodynamics
gptkbp:isPartOf chemical engineering
thermodynamic analysis
scientific methodologies
thermodynamic studies
other approximation methods
thermodynamic research
gptkbp:isRecognizedBy scientific community
engineering professionals
gptkbp:isReferencedIn textbooks
academic literature
gptkbp:isRelatedTo statistical mechanics
thermodynamic modeling
gptkbp:isSupportedBy theoretical foundations
gptkbp:isTrainedIn laboratory experiments
experimental data
theoretical models
computational studies
gptkbp:isUsedFor calculating fugacity coefficients
modeling chemical systems
modeling phase behavior
predicting vapor-liquid equilibria
gptkbp:isUsedIn industrial applications
computer simulations
thermodynamic simulations
gptkbp:isUtilizedIn environmental engineering
process optimization
process design
energy efficiency studies
phase equilibria studies
gptkbp:isVisitedBy 20th century
academic institutions
scientists
real gases
gptkbp:provides estimates of thermodynamic properties
gptkbp:usedIn thermodynamics