Award-Winning Chemistry Tutors
serving Long Beach, CA
Chemistry
Tutors in Long Beach
Private 1-on-1 tutoring, weekly live classes for academic support, test prep & enrichment, practice tests and diagnostics, and more to elevate grades and test scores.
Based on 3.4M Learner Ratings
UniversitiesSchools & Universities
DeliveredHours Delivered
ProficiencyGrowth in Proficiency
Who needs tutoring?
No obligation. Takes ~1 minute.

Pre-med coursework in biological sciences means Fady has taken chemistry from general through organic and biochemistry — and knows exactly which concepts trip students up at each level. He's particularly strong at unpacking stoichiometry and acid-base problems, breaking the math and the chemical logic apart so students can tackle each piece before putting them back together.

Balancing equations, stoichiometry, and the mole concept are where most chemistry students first feel lost — and where Aaron digs in deepest. He uses a conversational teaching style, asking students to explain each step of a problem aloud so gaps in understanding surface immediately. His pre-med science background at UCSB gives him daily fluency with the chemistry concepts he teaches.
Stoichiometry, equilibrium, and acid-base reactions all follow predictable logic once you see the patterns — and Timothy's medical training has kept him working with chemical principles long after his own chemistry courses ended. He unpacks each problem type by identifying what's given, what's missing, and which relationship connects the two, turning intimidating calculations into manageable steps.
Shant's psychobiology degree from UCLA required deep coursework in general and organic chemistry, so he teaches concepts like stoichiometry, molecular bonding, and reaction equilibria with the confidence of someone who's applied them in biological contexts. He breaks down intimidating topics by connecting abstract chemical principles to real-world processes students can visualize. Rated 5.0 by students.
Balancing equations, stoichiometry, and molecular bonding all require a different kind of thinking than most students expect from a science class. John completed a full STEM chemistry sequence at Loyola Marymount as part of his biology and pre-med track, so he knows exactly where the conceptual gaps tend to form. He unpacks each reaction type with visual models and dimensional analysis practice that builds real problem-solving fluency.
From balancing redox reactions to predicting solubility, chemistry rewards students who understand the "why" behind each rule. Nicole spent her UCLA years tutoring friends and family through general chemistry while completing her own pre-med prerequisites, so she knows exactly where students get stuck — particularly on mole conversions, gas laws, and equilibrium. She earned cum laude honors and a Phi Beta Kappa nomination along the way.
Stoichiometry, electron orbitals, equilibrium constants — chemistry is full of concepts that look intimidating until someone shows you the logic underneath. Mitch's engineering background means he treats every problem as a system to break down, connecting molecular behavior to the math that describes it. Rated 5.0 by students.
Neuroscience at Pomona College meant Whitney spent serious time in chemistry — from balancing redox reactions to understanding thermodynamics and acid-base equilibria at the molecular level. She breaks down intimidating topics like stoichiometry and molecular geometry by connecting them to real-world applications in biology and medicine.
A biology degree means Nicholas spent years relying on chemistry daily — from balancing redox reactions to interpreting equilibrium constants in biochemical systems. He teaches general chemistry topics like stoichiometry, acid-base equilibria, and thermochemistry by connecting each concept to a bigger picture, so students see how one chapter's ideas feed directly into the next.
Strong chemistry intuition comes from understanding why atoms behave the way they do, not just memorizing solubility rules or balancing equations by rote. Zhenrui's dual path through engineering and premed at Columbia means he's taken chemistry courses that span general, organic, and physical chem — and he uses that breadth to show students how concepts like thermodynamics and bonding connect across the entire subject.
Understanding the mole concept changes everything in chemistry — suddenly balancing equations, calculating yields, and predicting reactions all share the same underlying logic. Justin unpacks that logic by starting with dimensional analysis and building outward to stoichiometry, gas laws, and solution chemistry. His science-heavy coursework in neuroscience and physiology gave him years of practice applying these exact principles.
Balancing equations, stoichiometry, and electron configurations all demand a different kind of thinking than most students expect from science — it's abstract, quantitative, and detail-heavy. Pooja approaches chemistry by linking each calculation back to what's physically happening at the molecular level, so the math feels purposeful. Her science background at UC Irvine means she can connect chemistry concepts to biology and physics contexts students may already understand.
A dual background in ecology and molecular biology gave Siavash an unusually broad view of chemistry, from thermodynamics and equilibrium to atomic structure and bonding. He unpacks tricky concepts like stoichiometry and reaction kinetics by tying them to tangible examples from the lab bench, making the math-chemistry overlap less intimidating.
Teaching chemistry alongside biology and college-level life sciences gives Kellie a feel for where the two fields overlap — enzyme kinetics, cellular respiration, and acid-base buffering all require solid chemistry reasoning to actually understand. She leans into that interdisciplinary angle when explaining concepts like reaction energetics or equilibrium, building intuition for why a reaction behaves the way it does rather than treating each topic as an isolated formula to memorize.
I'm an affable chemistry-loving person whose joy come from delivering knowledge :D
Balancing equations and memorizing the periodic table are just the surface — chemistry clicks when a student understands why atoms bond the way they do. Mark approaches topics like stoichiometry and molecular geometry by building up from electron behavior, so each new concept feels like a logical next step rather than a disconnected rule to memorize.
Balancing equations is mechanical, but understanding why a reaction proceeds — electronegativity, intermolecular forces, thermodynamic favorability — requires a different kind of thinking. Tito tackles chemistry from both angles, making sure students can handle the calculations and articulate the conceptual reasoning behind them.
Stoichiometry, equilibrium, and acid-base reactions each require a different kind of thinking, and Caroline switches gears naturally between them because her molecular biology program at Berkeley demanded fluency across all of general chemistry. She taught Berkeley's introductory biology lab, which meant reinforcing chemical principles — buffer systems, reaction kinetics, thermodynamics — in a hands-on setting every week. That lab-bench perspective makes her explanations unusually concrete.
Understanding chemistry often comes down to one shift: seeing atoms and molecules as real things that behave predictably, not just symbols on a page. Alan's biology degree required extensive chemistry coursework — organic, general, and biochemistry — so he can walk through concepts like bonding, equilibrium, and reaction energetics with concrete examples from the lab. His 4.7 rating speaks to how well that approach clicks with students.
Having studied both physics and mathematics at Clark University, Sarah sees chemistry through the quantitative and conceptual lenses simultaneously — she can explain why electron orbitals shape bonding behavior and then seamlessly walk through the math of a calorimetry or dilution problem. Growing up between Los Angeles and Paris also gave her practice translating complex ideas across languages, a skill that transfers surprisingly well to translating chemistry's symbolic shorthand into plain, intuitive reasoning.
I'm a recent graduate of the California Institute of Technology in Economics and Computer Science. I was also accepted at Harvard, Princeton, MIT, and Stanford. I have a broad range of interests spanning science, math, engineering, social science, the humanities, the arts, and athletics (I also played on the Caltech basketball team). My background allows me to tutor general college prep, especially the SAT, ACT and the GRE. I love to teach analytical thinking, ranging from advanced Math and Physics to strategies for understanding literature and developing arguments.
I am a UCLA Bioengineer. I am a well qualified tutor and have had many years of experience in both paid and unpaid roles from 6th grade to 12 grade to present. I have always excelled in academics, math, writing, and english and have scored well on all standardized tests and state tests. I have scored 800/800 in SAT 1 math, SAT 2 math. I have scored 760/800 in SAT writing. I received scores of 5/5 in AP Calculus AB and BC and have taken numerous other APs, passing the APs in Physics, Biology, Literature, Language and Composition, Environmental Science, Economics, US history, and Chemistry. I was the President of my high school's only tutoring club and only math club, Infinity Math Club, where I dedicated my time tutoring struggling students in all math levels. I was a tutor in my high school's RAMS program for all academic subjects. I love working with students and love to see them succeed in subjects that they once struggled in.
I am a student at the University of Southern California, pursuing my Master's Degree in Geographical Information Science and Technology (GIST). I received a my Bachelor's Degree in Earth Sciences from USC in May of 2015. Education has always been an important part of my life and I love learning new things and helping others learn. I am passionate about the subjects that I tutor and I enjoy passing my enthusiasm for learning on to my students. In my spare time, I enjoy reading, hiking, camping, being outdoors, traveling, and doing yoga. My future goals include completing my graduate degree by August 2016 and becoming a GIS Analyst working in the environmental field.
I am a current undergraduate student at Occidental College, where I am majoring in Chemistry. I have a passion for teaching and engaging students with their education. There is little that is more rewarding than aiding a struggling student successfully. In high school, I was a member of the National Honors Society and relished the opportunities that organization provided me to tutor others. I love learning, and I love sharing that with others. What better way to engage others learning than tutoring?I enjoy video games and other computer related tasks, baseball, basketball, and I love to read.
I'm an undergraduate at UC Berkeley with two years currently under my belt and the intention to double major in anthropology and biology. My focus is on understanding human biological and social origins through analysis of human artifacts, biological remains, and environmental reconstruction, with a parallel interest in preservation strategies. Outside of academics, I'm passionate about all manner of developing sciences and technologies as well as current events and the history behind them.
I am most excited to discuss ecology, evolution, and math, but I am also able to tutor subjects such as physics, writing, and standardized testing. In my free time, I enjoy playing video games, practicing martial arts, and hiking.
Cognitive Studies at Vanderbilt covers a surprising amount of chemistry — neurotransmitter pathways, pharmacological mechanisms, and the molecular basis of perception all require solid command of bonding, functional groups, and reaction behavior. Vy draws on that foundation when teaching topics like molecular polarity and intermolecular forces, making the abstract feel grounded by connecting it to how chemicals actually interact in the brain. Holds a 5.0 rating.
As a pre-med student at Duke, Camille completed a full chemistry sequence — general through organic — and knows firsthand how abstract concepts like stoichiometry and electron configuration can feel before they finally click. She unpacks each topic by connecting molecular-level ideas to tangible examples students can actually visualize.
Stoichiometry, mole conversions, and balancing redox reactions all come down to careful, methodical problem-solving — exactly the skill set Ravnoor sharpens as a computer science student at Cornell. He walks through each type of calculation step by step, building the kind of practice repetition that turns confusion into confidence.
Stoichiometry, equilibrium, and acid-base reactions all require a kind of disciplined reasoning that Jessica developed through years of medical training, where chemistry underpins everything from pharmacology to metabolic pathways. She breaks down each problem type into a clear sequence of decisions rather than a wall of formulas to memorize.
David approaches chemistry by anchoring every new idea to something tangible: stoichiometry becomes a recipe problem, electron orbitals explain why molecules have specific shapes, and equilibrium constants predict which direction a reaction actually goes. That habit of connecting abstract rules to observable outcomes comes from his neuroscience training at Yale, where chemistry was the foundation for everything else.
Balancing equations, understanding mole ratios, distinguishing ionic from covalent bonds — chemistry has a vocabulary and logic all its own. John spent years teaching and chairing a science curriculum in Philadelphia, which gave him a sharp sense of how to sequence these ideas so each one builds naturally on the last.
Mechanical engineering at Harvard means Christopher lives in the overlap between chemistry and physics — material properties, thermodynamics, and reaction energetics show up constantly in his coursework. He breaks down topics like bonding, gas laws, and enthalpy calculations by tying them to tangible engineering problems, which gives abstract concepts a concrete anchor. Rated 4.8 by students.
Studying neuroscience at WashU means Ethan lives at the intersection of biology and chemistry, regularly working through reaction kinetics, molecular bonding, and thermodynamic principles in his coursework. He unpacks chemistry topics like stoichiometry, equilibrium, and electron configurations by anchoring them to tangible examples rather than leaving them as abstract formulas on a page.
A chemistry minor at Duke means Lauren spends her semesters immersed in stoichiometry, bonding theory, and thermochemistry — so she teaches these topics with the confidence of someone who uses them constantly. She's especially effective at demystifying mole conversions and equilibrium calculations, two areas where students often lose points from small conceptual gaps.
Stoichiometry, electron configurations, acid-base equilibria — chemistry has a reputation for feeling like a new language. Perry approaches it that way, teaching students the underlying grammar of moles, bonding, and reaction types so that problem-solving becomes intuitive rather than formulaic.
Michael started tutoring Regents-level chemistry during college and later taught chemistry concepts as part of Kaplan's MCAT prep course, so he's broken down everything from stoichiometry to acid-base equilibria for students at very different levels. His biology and medical background means he naturally ties chemical principles to how they show up in living systems — useful for students who want to understand the 'why' behind reactions. He graduated summa cum laude from Yeshiva College.
A chemistry degree gives Sung the depth to teach everything from stoichiometry and equilibrium to organic reaction mechanisms and thermodynamics at the college level. He treats problem sets as opportunities to trace the reasoning behind each step — balancing equations, for instance, becomes an exercise in conservation laws rather than trial and error. Rated 5.0 by students.
Testimonials
Because the right Chemistry tutor makes all the difference.
Average Session Rating – Based on 3.4M Learner Ratings
Practice Chemistry
Free practice tests, flashcards, and AI tutoring for Chemistry
Nearby Chemistry Tutors
Other Long Beach Tutors
Related Science Tutors in Long Beach
Frequently Asked Questions
Chemistry students often struggle with visualizing molecular structures and bonding concepts that exist at scales we can't see. Balancing chemical equations, understanding stoichiometry, and connecting abstract theories to real-world applications are frequent pain points. Many students also find it challenging to move beyond memorization to develop true conceptual understanding—which is essential for success on exams and in advanced courses.
Personalized 1-on-1 instruction allows tutors to identify exactly where your understanding breaks down—whether it's electron configurations, reaction mechanisms, or lab data interpretation. Expert tutors can use multiple approaches to explain difficult concepts, work through problems at your pace, and help you build scientific reasoning skills alongside content knowledge. This targeted approach is far more effective than classroom instruction where teachers must move at an average pace for 24+ students.
Yes. Tutors can help you understand the scientific method, design experiments, interpret lab results, and prepare formal lab reports. They can also explain the theory behind experiments you're conducting in class, helping you see how hands-on work connects to the concepts you're learning. This support strengthens both your experimental skills and your grasp of the underlying chemistry.
Your first session focuses on understanding your specific needs—whether you're preparing for the AP Chemistry exam, struggling with a particular unit, or building foundational skills. The tutor will assess your current understanding, identify knowledge gaps, and create a personalized plan tailored to your goals and learning style. This foundation ensures that all future sessions are targeted and productive.
Expert tutors help you master both content and test-taking strategies. They can work through past exam questions with you, identify patterns in your mistakes, and teach you how to approach complex multi-step problems efficiently. With focused practice and feedback, you'll build confidence and develop the problem-solving skills needed to perform well on standardized chemistry exams.
Varsity Tutors connects you with expert tutors who have strong backgrounds in chemistry—many hold degrees in chemistry, biochemistry, or related sciences, and many have teaching experience. Tutors are selected based on their subject expertise and ability to explain complex concepts clearly. You can review tutor qualifications and find someone whose experience matches your specific chemistry needs.
Balancing equations is a foundational skill that requires understanding atomic conservation and stoichiometry. Tutors can break down the process step-by-step, teach you systematic approaches, and give you plenty of guided practice with increasing difficulty. Once you understand the underlying logic rather than just memorizing steps, balancing equations becomes much more manageable.
Simply tell us about your chemistry goals and challenges, and we'll connect you with an expert tutor who's a great fit. You can start with a single session to see if the tutoring relationship works, then continue with a schedule that fits your needs—whether that's weekly sessions leading up to an exam or ongoing support throughout the school year.
Let’s find your perfect tutor
Answer a few quick questions. We’ll recommend the right plan and match you with a top 5% tutor.