-5*10^50 KJ/liter*seconds
To calculate the heat of combustion of C25H52, you can use the standard enthalpies of formation for C25H52, CO2, and H2O. The heat of combustion is the difference in enthalpy between the products (CO2 and H2O) and the reactant (C25H52), which can be calculated using Hess's Law. Alternatively, you can look up the heat of combustion value for C25H52 in chemical databases or literature sources.
The missing chemicals are 2LiOH + 2LiNO3 = H2O + CO2 + 4LiNO3.
Combustion reaction
2NH4Cl + Na2CO3 --> 2NH3 + CO2 + H2O + 2NaCl
The chemical equation CO + H2O → CO2 + H2 represents the combustion of carbon monoxide (CO) with water (H2O) to produce carbon dioxide (CO2) and hydrogen gas (H2). This reaction releases energy in the form of heat.
C3h8 + 5o2 -> 3co2 + 4h2o
The reaction between KOH and CO2 to produce K2CO3 and H2O is a double displacement reaction, also known as a neutralization reaction. In this reaction, the ions in KOH and CO2 switch partners to form new compounds K2CO3 and H2O.
Carbon dioxide (CO2) and water (H2O) can react to form an equilibrium state between these reactants and their product of carbonic acid (H2CO3). The simple reaction is H2O + CO2 <---> H2CO3.
It forms from co2 the h2o in the ozone combines with co2 and h2o to create ion and that is used in dooms day weapons It forms from co2 the h2o in the ozone combines with co2 and h2o to create ion and that is used in dooms day weapons
SO2 plus H2O equals H2SO3 which is Sulfurous Acid. CO2 plus H2O equals H2CO3which is Carbonic Acid. It also forms HNO3 which is nitric acid.
The balanced chemical equation is: CO2(g) + 2KOH(s) -> H2O(g) + K2CO3(s). The enthalpy change (ΔHrxn) for this reaction is the enthalpy of formation of the products minus the enthalpy of formation of the reactants. To calculate it, you would need the standard enthalpies of formation for all species involved.
The combustion reaction of heptane is:C7H16 + 11 O2 = 7 CO2 + 8 H2O