Sometimes, you will need to manipulate the order of magnitude of a number that is in scientific notation. The rule is that when you move a decimal place to the right (making the coefficient larger), the exponent becomes smaller. For example, 4.562 x 104 is the same as 4562 x 101.
On the flip side, moving the decimal to the left and making the coefficient smaller makes the exponent larger: 782 x 101 is the same number as 7.82 x 103.
Trigonometry
The MCAT wants you to be able to show a comprehensive grasp of the fundamental trigonometric principles, including the following:
- Defining basic trigonometric functions such as sine, cosine, and tangent, as well as their inverses (sin⁻¹, cos⁻¹, tan⁻¹).
- Identifying the sine and cosine values at key angles: 0°, 90°, and 180°.
- Understanding the relationships between the lengths of the sides of right triangles that involve angles of 30°, 45°, and 60°.
We can only use these trigonometric functions with right triangles. The functions are the ratios of the triangle side lengths:
- sin(θ) = opposite / hypotenuse
- cos(θ) = adjacent / hypotenuse
- tan(θ) = opposite / adjacent
A common mnemonic to remember these functions is SOH CAH TOA.
The inverse functions are:
- sin-1(θ) = hypotenuse / opposite
- cos-1(θ) = hypotenuse / adjacent
- tan-1(θ) = adjacent / hypotenuse
What You’re Provided With on Test Day
All you’re provided on test day is a laminated booklet that acts as scratch paper, along with a wet-erase pen.
You’ll need to find the correct answer to each math-related question by using only scratch paper. You will not be able to use a calculator for the MCAT.
Many students feel terror wash over them when they realize there’s no calculator allowed for the MCAT. But the absence of a calculator is good news in disguise — it means the level of calculations has to be relatively simple.
The AAMC calls their special scratch paper the MCAT Test Day Noteboard Booklet. It’s a laminated booklet that comes with a wet-erase pen and plenty of space to write out your calculations.
In order to use the Noteboard Booklet efficiently, there are two things you need to do before your test day:
- Relearn basic math concepts you haven’t used for years. During your MCAT prep, you may need to relearn math concepts you haven’t seen since high school. This includes basic trigonometry, logarithms, exponents, scientific notation, and fundamental algebra.
- Use practice questions that require you to use scratch paper. Do lots of realistic practice questions that require manual calculations with scratch paper during your study time. These practice questions prevent you from over-relying on mental math during test day.
Related Read: MCAT Test and Score Release Dates
Expert Problem-Solving Strategies for MCAT Math
Questions that require numerical problem-solving typically appear in the Chemical and Physical Foundations of Biological Systems Section (Chem/Phys for short). But you may find scattered math problems in the other three MCAT sections, too.
Being able to quickly identify the correct equations, numbers, and mathematical setup is crucial. Below are the best tips and strategies to set you up for MCAT math success.
Practice, Practice, Practice
The most important strategy is the most obvious: practice! You should complete practice problems multiple days a week during your MCAT prep.
Review your practice test results and use of scratch paper to improve the speed of your calculations.
Use Mental Math Tricks
Mental math tricks can help you develop good, consistent number sense. Dedicate time to practicing mental math during your study week.
Start with simple arithmetic operations such as addition, subtraction, multiplication, and division, and gradually increase the complexity of the problems as you become more comfortable.
Memorize MCAT Physics & Chemistry Equations
There are a lot of formulas and equations you need to know for the MCAT. Practice writing down these formulas and equations from memory. An equation will often have to be manipulated algebraically to solve for a particular variable.
The best equation strategy is to complete all of the algebraic manipulations of an equation before trying to plug in numbers. This will allow you to cancel out terms that may appear on both sides of the equation.