| Criteria |
M |
P |
R |
N |
| Simplifying Algebraic Expressions |
All answers are fully simplified. Exact answers are given, not approximations. Radical and exponential expressions are used appropriately and are simplified in the correct manner |
No algebraic errors OR some expressions are not simplified. |
There are some algebraic errors and some expressions were not simplified. |
There are some algebraic errors and some expressions were not simplified. |
| Problem Structure and Mathematical Communication |
Problems have a clear beginning, middle, and end. Work progresses clearly from one step to the next. The work provided uses appropriate methods and notation and provides a clear solution. |
Problems have clear beginnings and ends. Work progresses from one step to the next. The work provided uses algebraic methods, correct notation, and provides a solution. |
Parts of the mathematical structure are missing, or steps in the progress of the solution are missing. There are errors in the mathematical notation. The work provided uses algebraic methods and provides a solution. |
There is not a clear structure to the solution, notation is used incorrectly, and it is unclear what methods are being used. |
| Setting up and simplifying solutions to interest problems. |
Given information about interest should be able to correctly determine between compound interest and continuous compound interest. Should be able to set up the function with correct principal, rate, time and/or compounding factor. Should be able to simplify the expression. |
Given information about interest should be able to determine between compound interest and continuous compound interest. Should be able to set up the function with the principal, rate, time and/or compounding factor. |
Errors in setting up the interest function, and/or not able to fully simplify the expression. |
No evidence of underrstanding the interest type or the formula needed to solve |
| Setting up exponential growth and decay problems. |
Given information about an exponential model, determine if the function is exponential growth or decay; correctly find the growth rate, and initial value; and give the function in the requested form. |
Given information about an exponential model, determine if the function is exponential growth or decay; find a growth rate, and an initial value; and give the function in the requested form. |
Set up an exponential model but not in requested form. May have errors in the growth rate and/or the initial value. |
No evidence of understanding what an exponential growth or decay model is or how to find the initial information for the model. |
| Solving exponential growth and decay problems. |
Given a specific time, find the amount of the model at that time (answers should be simplified expressions). Given an amount, find the time needed to reach that amount (answers should be simplified expressions in terms of natural logarithms). |
Given a specific time, find the amount of the model at that time with minor errors. Given an amount, find the time needed to reach that amount with minor errors. |
Incorrect methods used to solve for the time or the amount OR decimal answers were given with little algebraic work leading to a solution. |
No evidence shown of finding the amount or the time needed in the exponential model. |