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Higher silica contents will be in the igneous rocks that form with lower temps. Ones that form earlier in the series like olivine have lower percentages of silica.

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What chemical change occurs when a more reactive substance replaces a less reactive substance in a compound?

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Related Questions

What does Bowens reaction series tell us about igneous minerals and rocks?

Bowen's Reaction Series illustrates the sequence of mineral crystallization from magma as it cools, highlighting how different minerals form at varying temperatures and conditions. It categorizes minerals into two branches: the discontinuous series, which features minerals that change composition as temperature decreases, and the continuous series, where plagioclase feldspar evolves in composition from calcium-rich to sodium-rich. This series helps geologists understand the relationships between igneous rocks, their mineral content, and the conditions under which they formed. Ultimately, it provides insights into the geological processes that shape Earth's crust.


Who is the creator of the reaction series?

The creator of the reaction series is Kyle Sibert, also known by his online alias, "Kyle Reacts." He started the series in 2017 and gained popularity for his genuine and entertaining reactions to various videos and content that he watches.


When can you determine a chemical reaction will occur?

Thermodynamically favorable reaction will occur. Also, if the neutral element is higher in the activity series than the charged element, then the reaction will occur.


What is the last mineral to form in bowens reaction series?

The last mineral to form in Bowen's reaction series is quartz. This mineral crystallizes from a melt at lower temperatures, typically below 600 degrees Celsius, after the formation of other minerals like feldspar and mica. Quartz is highly resistant to weathering and is often found in granite and other igneous rocks. Its late crystallization contributes to its abundance in the Earth's crust.


How can an unknown deltaH reaction be determined using Hess's law?

By manipulating known reactions with known enthalpy changes to create a series of intermediate reactions that eventually add up to the desired reaction whose enthalpy change is unknown. By applying Hess's law, the sum of the enthalpy changes for the intermediate reactions will equal the enthalpy change of the desired reaction, allowing you to determine its enthalpy change.


How can one determine both the KM and Vmax values for a given enzyme-catalyzed reaction?

To determine the KM and Vmax values for an enzyme-catalyzed reaction, one can perform a series of experiments measuring the initial reaction rate at different substrate concentrations. By plotting the data using the Michaelis-Menten equation, the KM value can be determined as the substrate concentration at half of Vmax. Vmax is the maximum reaction rate achieved when all enzyme active sites are saturated with substrate.


What is a statement of hesses law?

C - The enthalpy of reaction does not depend on the steps taken in the reaction. APEX --WXM--


The series of steps that constitute the reaction is called the?

Ans~ C for plato~ reaction mechanism


Complex series of chemical reactions in which products of one reaction are the reactants for the next?

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How can the activity series of element help you in dealing with a single replacement reaction?

in a single dispacement reaction, the lower metals are replaced by the upper metals in the metal activity series. for ex: copper sulphate + iron ----- iron sulphate + copper (copper is replaced by iron in this chemical reaction)


What type of reaction involves one element replacing an elememt in a compound from the activity series?

combustion reaction


How can an unknown triangle H reaction be determined using Hess's law?

To determine the unknown reaction of triangle H using Hess's law, you would need to consider a series of known reactions that add up to the desired reaction. By manipulating and combining these known reactions, you can derive the overall reaction for triangle H. This involves balancing the equations and adjusting their coefficients to ensure the conservation of mass and energy.