GRE Algebra: Question Types, Books, and Practice Papers
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GRE Algebra: Question Types, Books, and Practice Papers

Shubhankar Das logo

Shubhankar Das

Content Writer - Study Abroad | Updated On - Jun 20, 2024

GRE Algebra tests candidate’s basic mathematical skills and concepts from high school or middle school. About 25 percent of the GRE questions in the test are in elementary algebra, linear algebra, abstract algebra, and number theory. Out of 27 questions, GRE algebra questions have a weightage of 6 to 12 questions. The concept of algebra questions may appear in 4 different types namely- problem-solving, quantitative comparison, numeric entry, or more than one correct answer. 

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GRE algebra concepts are based on fundamental formulas. Algebra GRE questions may be seen complicated, but fundamentally they are easy. Regularly solving GRE algebra practice questions will help candidates to get familiar with the question types, and algebraic terminology. Candidates can find algebra GRE strategy guide and preparation materials from the ETS official website. GRE books provided by ETS covers full quantitative syllabus, and sample questions with answers.

GRE Algebra Syllabus

Unlike GRE quant questions, algebra is strictly based on fundamental formulas. Numbers are represented with alphabets in algebra GRE word problems. Even if the questions look difficult, they can be solved if the fundamental concepts are clear. The syllabus for GRE algebra includes the following topics:

  • Simplifying algebraic expressions
  • Expanding expressions
  • 3 types of factoring
  • Basic equations
  • Systems of equations
  • Quadratic equations
  • Equations with exponents
  • Equations with fractions
  • Equations with square roots
  • Equations with absolute values
  • The coordinate plane
  • Equations of lines
  • Graphs of quadratics

GRE Algebra Concepts

The algebra GRE questions are related to reasoning, problem-solving, data interpretation, and more. Algebra practice helps candidates to achieve an overall good score for GRE. Here are a few algebraic terms that form an integral part of the GRE algebra concepts.

  • Variable: A letter is used to present a quantity whose value is unknown. For instance, x, y, a, b, c, and d are commonly used variables.
  • Term: A term is referred to as a numerical constant or the product (or quotient) of a numerical constant and one or more variables. For instance, 3x, 5x2
  • Algebraic expression: It is a combo of one or more terms with each term connected with the addition or subtraction symbols. Like, as 3xy, 4ab − 5cd, and x²+ x − 1.
  • Coefficient: If we consider the previous point’s example, in the term 3xy, 3 is the coefficient.
  • Constant: Like its literal meaning, it means the value which doesn’t change. Like in x + 6, 6 is a constant.
  • Monomial: It is a singular algebraic term like -5x or 3a2
  • Polynomial: It is the regular name for algebraic expressions with more than one term
  • Binomial: A polynomial with two terms
  • Trinomial: A polynomial with three terms

GRE Algebraic Expressions 

GRE algebra questions comprises one or more variables. It can be written as a single term or as a sum of terms.

Here are four examples of algebraic expressions.

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GRE Algebra Basic Equations

To solve these basic equation problems, candidates need to make a table from the given question and draw the equation from it to solve the question.

Example:

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The table thus becomes:

Person PhD no-PhD Total
Women x x+10 ?
Men y/3 - y
Total 14 30 44

The box marked with the question mark is the one we want to fill in with our answer. The table is an additional table, so you can add horizontally and vertically. Set up two simultaneous equations:

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Solving these equations would give the answer to the question.

GRE Algebra Rules of Exponents and Radicals

There are three basic rules of exponents for GRE algebra questions:

  • xaxb=xa+b
  • xa/xb=xa-b
  • (xa)b=xab

Together with the rule for converting radicals into exponents, every other property basically derives from these rules.

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GRE Algebra Solving Equations in One Variable

On the algebra GRE questions, you may need to solve for an unknown in an equation with multiple variables.

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GRE Algebra Linear/Quadratic Inequalities

Inequalities GRE questions are one of the GRE algebra concepts which state relationships of comparison. You will get to know if you are dealing with inequality if you find these symbols: < > ≤ ≥.
GRE inequality questions are a distinctive type of linear variety. If a quadratic or another kind of expression shows up, then the analysis becomes trickier.

Example:image21

Quantity A Quantity B
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GRE Algebra Simultaneous Equations in Two Variables

This is another common sum in the GRE algebra practice. There can be sums with multiple variables for which substitution or elimination methods are required.

Exampleimage7

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Quantity A Quantity B
The ratio a/b where (a,b) is a solution to the system. 1

GRE Algebra GRE Word Problems

GRE algebra word problems have different methods of solving. Each word problem requires a different algebra GRE strategy guide instead of only finding a solution to the problem.

Example: Terry wants to invest image 1. What annual simple interest rate would be required in order for Terry to have a balance of  image 2 by the end of three years?

Tip: To solve the above problem, try using the simple interest formula for the unknown rate.

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GRE Algebra Functions and Their Graphs

Functions are the rules that state numbers to solve an equation. For instance, the function image15states to input different variables.

Example: If the graph of the function image8 goes through the point image22 , what is the value of image6?

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GRE Algebra Coordinate Geometry

In coordinate geometry, two real number lines when perpendicular to each other, intersect at zero points explaining a rectangular coordinate system. This is also called the xy-coordinate system or xy plane.

For instance, to know the slope-intercept form for lines (y=mx+b).

Example: What is the image13-coordinate where the line through (13,-7) and (-7,5) crosses the image13-axis?

GRE Algebra Symbolism

One very important feature seen in the GRE quant section is different kinds of symbols like ★, ✧, and ♦. Don’t stress seeing this as these kinds of problems will just require a substitution method. Reading the question carefully, understand what the symbol stands for, and accordingly answer. GRE algebra practice questions help you to get familiar with such concepts.

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GRE Algebra Sequences

Sequences are a list of numbers and the value of a number in a sequence is recognized by its position. It is generally presented as:

s s₂, s₃,…sn,…

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GRE Algebra Scores

The GRE quant part is graded on a scale of 130-170, with 1-point increments. The greatest possible score on this scale is 170, while the lowest possible score is 130. Because there are so few GRE Algebra exam takers, the scores are either high or poor. Nonetheless, the vast majority of them fall somewhere in the middle. The current average GRE Quants section score is 152.57.

GRE Algebra Books

Algebra GRE strategy guide is covered in the books listed below. These books provdes candidates with advanced preprataions.The following are a few of the best GRE Quant Books like Manhattan GRE algebra, Kaplan GRE math that contain numerous GRE algebra practice problems:

  1. The Official GRE Guide: Check PDF
  2. Manhattan Prep 5 Lb: Check PDF
  3. GRE Prep by Magoosh: Check PDF
  4. Kaplan GRE Math Workbook: Check PDF
  5. GRE Prep by MagooshCheck PDF
  6. Barron’s New GRE (19th Edition)Check PDF
  7. Cracking the GRE:Check PDF
  8. Official GRE Quantitative Reasoning Practice Questions:Check PDF

GRE Algebra Preparation Tips

GRE algebra practice helps candidates to achieve an overall good score on GRE. Here are some effective GRE preparation strategies to help you get the best GRE Quantitative score possible.

  • Understand the Word Problems: Familiarizing yourself with “English-to-Math” translation tables. This would help in concept building for the word problems.
  • Spend 2 minutes per question: As there are 20 questions within the 35 minutes time limit, spending more than 2 minutes on a single sum might leave the paper incomplete.
  • Follow the Procedure: The GRE math section includes various levels of questions. Sticking to the methods practiced helps to save time rather than following a new methodical approach.
  • Break the complex figures: The equational sums might be big so breaking into ambler parts and then solving the sum, might help in solving it quicker.

GRE Algebra Practice Questions

For more algebraic questions, candidates can consult GRE Math Practice Papers. Here are the GRE algebra practice questions pdf for help:

GRE algebra combines a real-life scenario into an algebraic equation and solve for the unknown value. With proper practice with the questions of higher difficulty levels, the candidates can secure a good score in GRE algebra. Candidates can find algebra GRE strategy guide from the ETS official website and practice effectively. 

FAQs

Ques. What topics in algebra should I focus on for the GRE?

Ans. You should primarily focus on linear equations, quadratic equations, inequalities, functions, exponents, and algebraic expressions. These are the core algebraic concepts tested on the GRE.

Ques. Do I need to memorize complex algebraic formulas for the GRE?

Ans. No, you don't need to memorize complex formulas. The GRE provides necessary formulas in the test booklet. Focus on understanding the concepts and how to apply them.

Ques. Is graphing important for GRE Algebra questions?

Ans. Yes, graphing is important. You may need to interpret and draw graphs to solve problems, especially in questions related to functions and inequalities.

Ques. Are there any specific strategies for solving algebra word problems on the GRE?

Ans. Yes, one effective strategy is to translate word problems into algebraic equations or inequalities. Break down the information provided in the problem and create equations to represent it.

Ques. Can I use a calculator for GRE Algebra questions?

Ans. Yes, you can use an on-screen calculator provided during the Quantitative Reasoning sections of the GRE. However, it's still essential to be proficient in mental math for quicker calculations.

Ques: What algebraic topics are commonly tested on the GRE?

Ans: GRE covers fundamental algebraic concepts, including equations, inequalities, functions, and basic algebraic manipulations.

Ques: How can I solve linear equations on the GRE quickly?

Ans: To solve linear equations efficiently, use properties like combining like terms and isolating the variable. Practice simplifying expressions and working with fractions type of questions.

Ques: What strategies should I employ to solve quadratic equations in the GRE exam?

Ans: Quadratic equations can be solved by factoring, completing the square, or using the quadratic formula. Practice all three types of questions to be well-prepared.

Ques: How do I handle systems of linear equations in two variables on the GRE?

Ans: You can solve systems of linear equations by substitution, elimination, or matrices. Practice each method to give proper answers.

Ques: What is the importance of inequalities in GRE algebra?

Ans: Inequalities are crucial as they test your understanding of algebraic relationships. Practice solving linear and quadratic inequalities and understanding their graphical representations.

Ques: What is the concept of functions in GRE algebra, and how are they tested?

Ans: GRE algebra functions involve input and output relationships. Understand function notation, domain, range, and composition, as questions on these concepts are common in GRE.

Ques: What strategies are useful for solving algebra on GRE?

Ans: You can solve algebra on GRE by understand the word problems, spend 2 minutes per question, follow the procedure, and break the complex figures.

Ques: What is the significance of factoring in GRE algebra questions?

Ans: Factoring is important for solving quadratic equations and simplifying expressions. Practice factoring techniques for both simple and complex algebraic expressions to give proper answers.

Ques: What is the difference between arithmetic and geometric sequences?

Ans: Arithmetic sequences have a common difference, while geometric sequences have a common ratio. Practice identifying these sequences and finding specific terms to understand the question and give proper answer.

Ques: How can I approach problems involving functions and composite functions on the GRE?

Ans: You can solve problem-solving functions and composite functions by understand function composition, and practice evaluating and simplifying composite functions. Pay attention to domain restrictions.

Ques. Are there any shortcuts or tips for solving algebraic equations more quickly?

Ans. Yes, learn to recognize common patterns and shortcuts. For example, you can use the quadratic formula to quickly solve quadratic equations.

Ques. How do I tackle algebra questions involving inequalities?

Ans. When dealing with inequalities, remember that multiplying or dividing by a negative number reverses the inequality sign. Pay attention to the sign changes when manipulating inequalities.

Ques. What's the best way to approach algebra questions with variables in the answer choices?

Ans. Substitution is often a useful technique. Plug in values for the variables in the answer choices and see which one satisfies the given conditions in the problem.

Ques. Should I guess on algebra questions if I'm unsure of the answer?

Ans. On the GRE, there's no penalty for guessing, so it's usually a good idea to make an educated guess if you're unsure. Eliminate obviously incorrect choices first.

Ques. Are there any recommended resources for GRE Algebra practice?

Ans. Yes, there are many GRE prep books, online courses, and practice tests available. ETS, the organization that administers the GRE, offers official GRE materials, including the GRE Official Guide, which is a valuable resource for practice.

*The article might have information for the previous academic years, which will be updated soon subject to the notification issued by the University/College.

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