Award-Winning High School Chemistry Tutors
serving Queens, NY
High School Chemistry
Tutors in Queens
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.
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Mole conversions, electron configurations, acid-base equilibria — high school chemistry asks students to juggle a lot of conceptual frameworks at once. Jacob's astrophysics training gave him strong command of the physical chemistry principles underlying these topics, and his instinct as a playwright is to strip an explanation down to its clearest, most compelling form.

A chemistry major at Harvard who's heading to Columbia Medical School, James teaches high school chemistry with the kind of depth that makes concepts like stoichiometry and electron configurations click on a conceptual level — not just as formulas to memorize. He connects classroom topics to real-world applications in medicine and materials science, which tends to turn chemistry skeptics into students who actually enjoy the subject.
Three science bachelor's degrees — including one specifically in chemistry — mean Sung has spent serious time with everything from electron orbitals to thermochemistry, not just at the introductory level but across multiple disciplinary angles. He digs into the "why" behind concepts like periodic trends and reaction energetics so students can reason through unfamiliar problems on exams instead of relying on memorized shortcuts. Rated 5.0 by students.
Serving as an undergraduate teaching assistant for introductory biochemistry at Cornell gave Josef a clear picture of where students first lose the thread in chemistry — usually right around stoichiometry and the mole concept, when the math suddenly feels disconnected from what's happening at the molecular level. He bridges that gap by tying quantitative problems back to the reaction logic, so balancing equations and calculating yields feel like extensions of chemical reasoning rather than standalone arithmetic exercises. Holds a 5.0 rating.
Balancing equations and stoichiometry trip up most high school chemistry students because the logic feels invisible at first. Garrett teaches the mole concept by tying it to tangible quantities — grams on a scale, liters of gas — so the math stops feeling arbitrary. His background in biology and physical chemistry also lets him show students where these reactions actually matter in living systems.
Balancing equations, mole conversions, and periodic trends are the building blocks of high school chemistry, and Camille tackles each one by teaching the underlying logic rather than handing students a formula sheet. Her pre-med background at Duke means she's fluent in the problem-solving style these courses demand. Rated 5.0 by students.
Most high school Chemistry struggles come down to one thing: the periodic table is supposed to be a cheat sheet, but nobody taught students how to read it. Sharan connects trends like electronegativity and atomic radius to actual behavior in reactions, so predicting whether a bond is ionic or covalent stops being a guessing game. She's earned a 5.0 rating tutoring science subjects alongside her premed studies at Cornell.
Neuroscience at Yale meant David didn't just take chemistry — he needed it to work, especially when tracing how ion channels, neurotransmitters, and cellular signaling depend on concepts like electronegativity, polarity, and equilibrium. That gives him a concrete answer when students ask why any of this matters, and it shapes how he teaches topics like chemical bonding and reaction energetics: rooted in what molecules actually do, not just what shows up on a worksheet.
Balancing equations, understanding molarity, and predicting reaction products all click faster when a student sees the logic underneath the formulas. Li's medical and science background means she can explain why a precipitation reaction happens at the molecular level, then walk through the math step by step.
Chemistry has always been one of Samantha's favorite subjects to teach — she earned her degree in Chemistry & Chemical Biology from Cornell and genuinely enjoys unpacking topics like stoichiometry, molecular geometry, and acid-base equilibria. She's a visual teacher who sketches out Lewis structures, orbital diagrams, and reaction maps so that abstract concepts become something students can actually picture. Her 5.0 rating speaks to how well that approach lands.
At a preparatory school where she manages and teaches daily, Moriah has spent real time walking students through science material one-on-one — including the kind of systematic problem setup that chemistry demands for topics like stoichiometry and dimensional analysis. Her strength is reading how a student processes information and adjusting the explanation on the spot, which matters in a subject where one shaky concept (like mole ratios) can derail an entire unit. Rated 5.0 by students.
Balancing equations, understanding molarity, and predicting reaction products are all things Lisa does routinely in her marine biogeochemistry lab at Stony Brook. She approaches high school chemistry by grounding each new topic in a concrete example so students see the logic behind the math, especially in tricky areas like equilibrium and acid-base chemistry.
Fourth-year medical students don't usually think about stoichiometry or gas laws anymore, but Michael's path through Albert Einstein College of Medicine — plus his biology degree earned summa cum laude — means he's built on those high school chemistry foundations repeatedly in biochemistry, pharmacology, and physiology. He also spent time tutoring Regents-level chemistry and teaching MCAT prep for Kaplan, so he knows exactly where the gaps tend to form around topics like nomenclature, mole calculations, and balancing equations, and how to close them quickly.
Pre-dental coursework at Vanderbilt took Sarah through the full general chemistry sequence, so topics like stoichiometry, equilibrium, and gas laws are tools she still uses regularly in her science track — not material she's recalling from years ago. She zeroes in on dimensional analysis and mole relationships as the backbone of most high school chemistry problems, teaching students to map out the logic of a calculation before touching a calculator. Rated 5.0 by students.
Balancing equations and predicting reaction products can feel like learning a foreign language, but Eric breaks inorganic chemistry concepts down into logical steps that build on each other. His science training across biology and ecology gives him a knack for connecting chemical principles — like bonding and stoichiometry — to real-world processes students can actually picture.
Balancing equations and stoichiometry problems click faster when you understand what's actually happening at the molecular level — and Laura's biology coursework at WashU in St. Louis means she's constantly applying chemistry concepts like bonding, reaction energetics, and solution behavior in biological contexts. That dual perspective lets her explain why a concept like electronegativity or gas behavior matters beyond the chemistry classroom, which tends to make the logic memorable rather than disposable. Rated 5.0 by students.
Running an immunology lab at Columbia means Matthew uses chemistry daily — from buffer calculations to understanding reaction kinetics in biological systems. For high school students tackling stoichiometry, equilibrium, or electron configurations, he explains the logic behind each concept rather than handing out shortcuts that fall apart on harder problems. Rated 5.0 by students, he makes the quantitative side of chemistry far less intimidating.
Balancing equations, stoichiometry, and the mole concept tend to feel like arbitrary math until someone shows you the logic underneath — and that's exactly where Abismael's chemical engineering background pays off. He throws tough, unexpected problems at students during sessions so that exam day feels routine by comparison.
The jump to high school chemistry — where moles, electron configurations, and equilibrium all arrive at once — trips up a lot of students who did fine in earlier science classes. Sophia spent three years tutoring chemistry at her high school's Academic Resource Center, so she knows exactly which concepts tend to cause confusion and how to untangle them. Her current science coursework at Cornell keeps these topics sharp and relevant in her own studies.
AP and accelerated chemistry courses move fast, and students often fall behind the moment mole conversions or electron configuration stop making sense. Laura took both tracks herself before pursuing pre-med sciences at Princeton, so she knows exactly where the common stumbling blocks are — and she breaks down topics like periodic trends, bonding theory, and reaction balancing into logical steps that build on each other.
Neuroscience at Vanderbilt means Blake spends his coursework tracing how molecules behave at the cellular level — so high school chemistry topics like bonding, intermolecular forces, and reaction energetics are woven into what he studies every week. He approaches lab-style problems and dimensional analysis with the quantitative rigor that earned him a 34 ACT, breaking each calculation into clear, repeatable steps. Rated 5.0 by students.
Dakota's philosophy training might seem unrelated to chemistry, but philosophy sharpens exactly the kind of logical reasoning that makes topics like dimensional analysis, stoichiometry, and balancing equations click — breaking a complex problem into its component parts and following the logic step by step. With a 33 ACT and a broad science tutoring background spanning middle and high school levels, Dakota approaches chemistry as a structured argument where each calculation has to justify itself.
Teach for America put Elizabeth in front of high school science classrooms daily, and her Harvard coursework gave her the academic depth to back it up — so when a student gets stuck on electron configurations or balancing redox reactions, she can trace the concept back to first principles rather than just re-explaining the textbook. She pushes students to articulate their reasoning out loud, which tends to surface exactly where the confusion lives.
Stoichiometry is where most high school chemistry students first feel lost — moles, molar mass, and limiting reagents all collide at once. Kelsey tackles it by walking through the dimensional-analysis logic step by step, building the kind of problem-solving habit that carries through to equilibrium, redox reactions, and beyond.
Balancing equations and predicting reaction products trips up a lot of high school chemistry students because it feels like guesswork. Katherine teaches the underlying logic — electronegativity trends, mole ratios, stoichiometric reasoning — so that each problem type follows a clear pattern rather than requiring memorization of isolated steps.
Between his Duke coursework and intensive MCAT preparation, Benjamin has worked through stoichiometry, equilibrium, acid-base reactions, and thermochemistry multiple times from multiple angles. That repetition means he can quickly pinpoint where a concept breaks down for a student and explain it a different way. He holds a 5.0 client rating.
Varun's academic background is in government and film rather than the sciences, but his 1580 SAT and broad tutoring experience across math and science subjects mean he's comfortable walking through the quantitative reasoning that trips students up in chemistry — dimensional analysis, mole calculations, and stoichiometry setups. He approaches these topics the way he'd approach a tricky math problem: isolating what you know, identifying the relationship, and building toward the answer one logical step at a time.
Stoichiometry, electron configurations, and VSEPR theory all make more sense when someone explains the 'why' behind each rule. Marcus tutored science peers at Yale and draws on that experience to unpack high school chemistry topics in a way that builds genuine understanding. His pre-med background means he naturally connects chemical concepts to biological relevance, which keeps the material engaging.
Most high school chemistry struggles trace back to a handful of sticking points: mole conversions, balancing redox reactions, or figuring out what's happening in an equilibrium expression. Drisana approaches each of these as a structured math problem, showing students a repeatable setup so they can handle new variations on their own instead of memorizing each example separately.
Dental school at Penn requires a command of chemistry that most people don't associate with dentistry — understanding how composite resins bond, why certain anesthetics work at specific pH levels, and how fluoride interacts with enamel at the molecular level. Josh brings that applied chemistry lens to high school topics like bonding, acids and bases, and solution chemistry, giving students concrete examples of where these ideas show up beyond the textbook.
Doing a PhD in genetics and neuroscience at Rockefeller while pursuing his MD at Weill Cornell, Daniel lives in a world where chemistry isn't abstract — electron behavior, bond energies, and reaction equilibria show up every time he reads a paper or designs an experiment. He teaches stoichiometry and gas laws by anchoring the math in the molecular reality underneath, so the calculations feel like they're describing something rather than just producing an answer.
Balancing redox reactions or predicting molecular geometry often trips students up because the rules feel arbitrary without a deeper framework. Colin earned his biology degree at Washington University in St. Louis with extensive chemistry coursework, so he teaches concepts like periodic trends, stoichiometry, and acid-base equilibria by showing how each idea builds on the last. That structural approach turns memorization-heavy chapters into something students can actually reason through.
After completing Columbia University's premedical certificate program — where he worked through college-level chemistry, biology, and physics — Timothy returned to chemistry with the kind of intentionality that comes from choosing the subject as an adult rather than just checking a box. He digs into the stoichiometry and nomenclature questions that trip up high school students by connecting them back to the underlying atomic behavior, making the problem-solving feel logical rather than arbitrary. Rated 5.0 by students.
Stoichiometry is where most high school chemistry students start to struggle, because it demands both conceptual understanding and careful unit tracking at the same time. Brandon approaches it the way engineers do: systematically, with dimensional analysis as the backbone of every calculation. His 5.0 rating speaks to how well that structured method clicks for students.
Balancing equations and predicting reaction products can feel like learning a foreign language without a dictionary. Jamie teaches high school chemistry by connecting each concept — stoichiometry, molarity, gas laws — to tangible examples that make the logic behind the math visible. His Penn State science background and medical school training mean he knows exactly where these fundamentals lead.
Balancing equations and predicting reaction products gets a lot easier when you can laugh through the tough parts — Elsia turns tricky stoichiometry and mole conversions into competitive problem-solving races that actually make the concepts stick. Her cognitive science background means she understands how students learn and retain information, so she tailors explanations of topics like periodic trends and bonding to how each student's brain works best.
Stoichiometry, electron configurations, equilibrium — high school chemistry piles on abstract concepts fast, and students who fall behind on mole conversions or Lewis structures often struggle to catch up. Idara concentrated in chemistry at Stanford, so she unpacks these topics from genuine fluency rather than rehearsed explanations. She's particularly sharp at connecting molecular-level behavior to the math that describes it.
From electron configurations to acid-base equilibria, high school chemistry is full of concepts that seem unrelated until someone shows you the thread connecting them. Jeremy ties each new topic back to atomic structure and periodic trends so that predicting reaction outcomes starts to feel intuitive rather than like guesswork.
The jump from middle school science to high school chemistry often catches students off guard — suddenly they're expected to think in moles, track electron configurations, and solve dimensional analysis problems. Adam tackles these early stumbling blocks by making the periodic table feel like a map rather than a wall of symbols. His approach emphasizes understanding trends and relationships so that predicting chemical behavior becomes intuitive, not just an exercise in memorization.
Cognitive neuroscience might not scream chemistry, but Kenneth's degree required him to understand how ions cross cell membranes, how electrochemical gradients work, and how molecular properties drive biological signaling — all of which root back to concepts like electron configuration, bonding, and equilibrium. That foundation lets him explain high school chemistry topics by tying them to what atoms and molecules are actually doing, which makes abstract ideas like polarity and reactivity feel less like arbitrary rules.
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Frequently Asked Questions
Your first session is focused on understanding your goals and current level. A tutor will assess which chemistry topics challenge you most—whether that's balancing equations, stoichiometry, or conceptual understanding of bonding and reactions—and discuss your learning style. This helps create a personalized plan that targets your specific needs rather than a one-size-fits-all approach.
Balancing equations is one of the most common chemistry struggles because it requires both pattern recognition and understanding of conservation of mass. Tutors break down the systematic approach, show you how to identify what's happening in a reaction, and give you plenty of guided practice with immediate feedback. This combination of explanation and repetition helps the process click much faster than working through a textbook alone.
Yes—tutoring covers both the theory behind experiments and the practical skills you need in the lab. Tutors help you understand the scientific method, predict outcomes based on chemical principles, and troubleshoot when results don't match expectations. This preparation builds confidence and helps you think like a scientist rather than just following steps on a worksheet.
Concepts like molecular structure, electron configurations, and reaction mechanisms are invisible, which makes them hard to grasp. Expert tutors use diagrams, models, analogies, and step-by-step visualizations to make these abstract ideas concrete. They also help you develop the mental imagery skills that let you "see" what's happening at the molecular level—a key part of chemistry understanding.
Unit conversions and stoichiometry require you to juggle multiple steps while keeping track of what each number represents—it's easy to lose the "why" in the process. Tutors teach you to think about conversions as a logical flow rather than memorized formulas, and they help you catch common mistakes like forgetting to account for coefficients. With guided practice, these problems become much more manageable.
Tutors help you move beyond memorization to genuine understanding—which is what exams actually test. They review past exam questions, identify patterns in what's asked, and make sure you can apply concepts to new problems. For New York students, this includes targeted preparation for the Regents Chemistry exam, covering both multiple-choice and constructed-response questions.
Understanding concepts is far more valuable and actually easier to retain long-term. When you understand why a reaction happens or how bonding works, you can solve new problems and remember the material better. Tutors focus on building that conceptual foundation first, which naturally reduces the amount of memorization you need—you'll remember what makes sense far better than isolated facts.
Varsity Tutors connects you with tutors who have strong chemistry backgrounds—many have degrees in chemistry, biochemistry, or related sciences, and many have teaching experience. All tutors are vetted for expertise and communication skills, so you're working with someone who not only knows chemistry but can explain it clearly. You can discuss a tutor's specific background before your first session.
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