This balances, but I'm not sure if it is realistic because there a number of different possibilities with the types of alkanes and alkenes produced.
C21H44 = C8H18 + 2C2H4 + 3C3H6
no , they are not the same . cracking involves bonds such as alkanes (single bonds) and alkenes (double bonds) , these are broke down into more use full resourcefull chains , this is called cracking . thermal decomposition is the decomposition of something being heated up , so lets say for example - calcium carbonate (when heated) = calcium oxide +carbon dioxide , this is the word equation for thermal decomposition . so yes yu could refer both of them to being alike
The chemical equation is:SiH4 = Si + 2 H2
Glass can be heated without cracking by gradually increasing the temperature and allowing it to cool slowly to prevent thermal shock. This process helps the glass to expand and contract evenly, reducing the risk of cracking.
The thermal decomposition reaction of zinc carbonate can be represented by the equation: ZnCO3(s) → ZnO(s) + CO2(g)
The balanced symbol equation for the thermal decomposition of copper carbonate is: CuCO3(s) -> CuO(s) + CO2(g)
Thermal CRacking is caused by heat while catalytic cracking is not caused by heat
Carbonium ion process
Carbonium ion process
Thermal cracking can weaken shingles by causing them to become brittle and more prone to breaking or cracking. This can reduce the durability of the shingles and make them more susceptible to damage from weather and other external factors.
it is when alkanes are used to form cracking.
no , they are not the same . cracking involves bonds such as alkanes (single bonds) and alkenes (double bonds) , these are broke down into more use full resourcefull chains , this is called cracking . thermal decomposition is the decomposition of something being heated up , so lets say for example - calcium carbonate (when heated) = calcium oxide +carbon dioxide , this is the word equation for thermal decomposition . so yes yu could refer both of them to being alike
c4h10=2c2h4 +h2
Hang-Sun Chang has written: 'Prediction of thermal reflection cracking in west Texas' -- subject(s): Asphalt concrete Pavements, Cracking, Pavements, Thermal stresses
The variable "Q" represents thermal energy in the equation Q=mcΔT.
Catalytic cracking offers several advantages over thermal cracking, primarily in terms of efficiency and product quality. It operates at lower temperatures, which reduces energy consumption and minimizes the formation of unwanted by-products like coke. Additionally, catalytic cracking yields a higher proportion of valuable light products, such as gasoline and olefins, while thermal cracking often results in heavier, less desirable fractions. The presence of catalysts also allows for more selective reactions, enhancing overall process control and product specificity.
The chemical equation is:SiH4 = Si + 2 H2
Glass can be heated without cracking by gradually increasing the temperature and allowing it to cool slowly to prevent thermal shock. This process helps the glass to expand and contract evenly, reducing the risk of cracking.