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  2. The first law of thermodynamics states that the change in internal energy of a system Δ U equals the net heat transfer into the system Q, plus the net work done on the system W.
    www.khanacademy.org/science/physics/thermodynamics/laws-of-thermodynamics/a/what-is-the-first-law-of-thermodynamics
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    What is the first law of thermodynamics?The first law of thermodynamics states that the change in internal energy of a system Δ U equals the net heat transfer into the system Q , plus the net work done on the system W . In equation form, the first law of thermodynamics is, Wait, why did my book/professor use a negative sign in this equation?
    What does the first law of thermodynamics say about internal energy?Its internal energy. So the first law of thermodynamics says that energy cannot be created or destroyed, only transformed. So let's say that internal energy is changing. So I have this system, and someone tells me, look, the internal energy is changing. So delta U, that's just a capital delta that says, what is the change an internal energy?
    How do you calculate the first law of thermodynamics?The first law of thermodynamics is given as ΔE = q + w Δ E = q + w, where ΔE Δ E is the change in internal energy of a system, q q is the net heat transfer (the sum of all heat transfer into and out of the system), and w w is the net work done (the sum of all work done on or by the system).
    What was the first law of thermodynamics for closed systems?The first law of thermodynamics for closed systems was originally induced from empirically observed evidence, including calorimetric evidence. It is nowadays, however, taken to provide the definition of heat via the law of conservation of energy and the definition of work in terms of changes in the external parameters of a system.
     
  4. What is the first law of thermodynamics? - Khan Academy

     
  5. First Law Of Thermodynamics - Equation, Statement, …

    WebThe First Law of Thermodynamics states that heat is a form of energy, and thermodynamic processes are therefore subject to the principle of …

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