All Formulas Of Thermodynamics Physics Class 11 Physics Formula


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Basic Thermodynamic Formulas (Exam Equation Sheet) Control Mass (no mass flow across system boundaries) Conservation of mass: π‘š= 𝑐𝑐𝑐𝑐𝑐𝑐𝑐𝑐. Conservation of energy (1st Law): π‘„βˆ’π‘Š= βˆ†πΈ = βˆ†π‘ˆ+ βˆ†πΎπΈ+ βˆ†π‘ƒπΈ = π‘š βˆ†π‘’+ 𝑣2 2βˆ’π‘£ 1 2 2 + 𝑔(𝑧2βˆ’π‘§1)


Sample Formula Sheet For Thermodynamics

Common thermodynamic equations and quantities in thermodynamics, using mathematical notation, are as follows: Definitions Many of the definitions below are also used in the thermodynamics of chemical reactions . General basic quantities General derived quantities Thermal properties of matter Thermal transfer Equations


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Thermodynamics Formula: Heat, Work, Energy Thermodynamics studies the relationships between heat, work, and energy, governed by four fundamental laws. It describes energy conservation and the natural direction of energy flow. Ranvijay Singh September 23, 2023 Table of Contents


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Thermodynamics Cheat Sheet Universal Gas Law The First Law Always true: For cycles: For constant volume (no work done): Work Done Always true: True for constant : True for constant : (PV is constant) True when adiabatic & reversible: (Isentropic) Shaft Work Constant Pressure Constant Volume Perfect, Adiabatic & Reversible (Isentropic) is constant:


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Chapter 6 Formula Sheet. Reversible Adiabatic (Isentropic Process): Entropy decrease in process 3-4 = the entropy increase in process 1-2.


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Formula Sheet for Thermodynamics. 1. Internal energy. The total energy of constituent molecules. It is equal to the sum of internal kinetic energy and potential energy. Change in internal energy dU = (U - U) = nC v dT Internal energy is a function of state only and its change does not depend on path. 2.


Thermodynamics Formulas

Thermodynamics - Equations. internal energy:Ξ”, is also shown as in many books and often on Quest) First Law of Thermodynamics(this is a mathematical version of the first law) Substances not changing phase: ==. Substances that are changing phase (transition): = =. "trans" will be one of the following: fusion, freezing, evaporation, condensation.


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Example: 1,000,000 Pa = 1 MPa. Newton's Second Law . Sometimes, the questions indicate weight (W) Temperature Conversion . Pressure Measurement


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1 Heat and Temperature Temp. scales: F = 32 + 9 5C; K = C + 273:16 Ideal gas equation: pV = nRT, n : number of moles van der Waals equation: p + a 2 (V b) V = nRT Thermal expansion: L = L0(1 + A = A0(1 + T); V = V0(1 + = 3


Thermodynamics Formula Sheet PDF

Gas laws PDF image All of theormodynamics in one sheet 1 We have a total of 7 unknowns. 3 in state 1, 3 in state 2, and n, the polytrpoic process exponent. If given any 5 out of these 7, then the remaining 2 can be found. For example, if we know T1, P1, V1, n, P2, then we can find V2, and T2 P V n constant


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Thermodynamics equation h , = Where m=mass, g=gravitational acceleration , = 3 Where m=mass, V =Volume Sign convention: Work done on a system = (+) Work done by a system = (-) ENERGY TRANSFER BY WORK: Electrical Work: When N Coulombs of electrical charge move through a potential difference V = In the rate form, = = 2 = Where 2 ( )


Pin on notes

K = mv2/2 = p2/2m. WNET = K. Potential Energy. Ugrav = mgy (near earth surface) Ugrav = -GMm/r (in general) Uspring = kx2/2. E = K + U = Wnc.


Thermodynamics Formulae2

Forms of the First Law of Thermodynamics Most general forms = Q - W, e = q - w, dE = Q - W, and de = q - w Neglecting changes in kinetic and potential energy = Q - W u = q - w, dU = Q - W, and du = q - w Neglecting changes in kinetic and potential energy, in terms of enthalpy = U + pV therefore dH = dU + pdV + Vdp so dH = - W + pdV + Vdp


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Chapter 1 Formula Sheet; Chapter 2. Chapter 2 Formula Sheet; Chapter 3. Chapter 3 Formula Sheet; Chapter 4. Chapter 4 Formula Sheet; Chapter 5; Chapter 6. Chapter 6 Formula Sheet; Steam Property Tables


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Chapter 3 Formula Sheet - Thermodynamics. Chapter 1. Chapter 2. Chapter 3. Chapter 4. Chapter 6.


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Chapter 1 Formula Sheet - Thermodynamics. Chapter 3. Chapter 4. Chapter 6.