MCAT Physics & Chemistry Equation Flashcards: Formulas, Units & When to Use Them
Memorize MCAT physics and chemistry equations with variables, units, conditions, and original when-to-use examples—not a bare formula dump.
Sellest kaardipakist
MCAT Physics & Chemistry Equation Flashcards: Formulas, Units & When to Use Them
These 180 cards build fast recall for the equation-heavy part of MCAT Chem/Phys: 95 physics cards and 85 chemistry cards. They cover formulas, variables, units, assumptions, signs, and the small clues that tell you which relationship fits.
What the cards practice
The prompts move in several useful directions. Some ask for an equation from a concept, some ask what an equation or unit means, and others give a short original setup where the main job is choosing the right relationship. Common traps—such as static friction always equaling its maximum, Celsius in a gas law, or multiplying a reduction potential by a coefficient—get their own constraint cards.
This isn't a mechanical set of forward-and-reverse pairs. Closely related variants appear only when they train a different recall job, and the fixed order keeps them at least three unrelated cards apart. Physics and chemistry are interleaved while prerequisites stay in order inside each topic. Long-term spacing is left to the review scheduler.
Coverage
Physics covers dimensional analysis and SI units, mechanics, fluids, waves and sound, electrostatics, circuits, magnetism, light, geometrical optics, and thermal expansion. Chemistry covers gases, stoichiometry, solutions and concentration, acids and bases, buffers, thermodynamics, calorimetry, kinetics, equilibrium, solubility, and electrochemistry.
The deck is a recall layer, not a substitute for passage analysis, estimation, or multi-step calculation practice. The AAMC outline includes scientific reasoning and formula use in context, so practice problems still matter.
Scope and provenance
The current AAMC content outline was used to set the boundary, while independent open references were used to check equations, variables, units, assumptions, and sign conventions. The prompts, answers, micro-scenarios, sequence, and metadata were written independently. Public pages from UWorld, MedSchoolCoach, and MCAT Bootcamp were compared only at a structural level; no table, wording, example, or organization was copied.
The Common knowledge · CC0 1.0 label applies to the original wording, organization, metadata, and generated cover to the extent applicable rights exist. It doesn't claim ownership of scientific facts or third-party names.
This package is independent and unofficial, with no affiliation with or endorsement by AAMC. No official questions, answer keys, mark schemes, outline wording, logos, or trade dress were copied. Check the official AAMC MCAT content outline for the exam owner's current requirements.
Selle kaardipaki kaardid
Kaart 1
Küsimus
Which relationship gives average velocity over a time interval?
Vastus
.
Displacement includes direction; average speed instead uses total distance.
Kaart 2
Küsimus
How do you convert a sample's mass to moles?
Vastus
.
Divide mass by molar mass using compatible units.
Kaart 3
Küsimus
What is the electrostatic force between two point charges?
Vastus
.
It acts along the line joining the charges; like charges repel and unlike charges attract.
Kaart 4
Küsimus
How is pH defined from hydrogen-ion activity in the usual MCAT approximation?
Vastus
.
The bracket approximation uses molar concentration for sufficiently dilute solutions.
Kaart 5
Küsimus
How are period and frequency related?
Vastus
.
Frequency is in hertz and period is in seconds.
Kaart 6
Küsimus
Which relationship gives sensible heat for a sample with known specific heat?
Vastus
.
Use it within one phase when the specific heat is approximately constant.
Kaart 7
Küsimus
Which relationship defines mass density?
Vastus
.
Density has SI units of ; .
Kaart 8
Küsimus
What is the concentration equilibrium constant for ?
Vastus
.
Use equilibrium concentrations and stoichiometric coefficients as exponents.
Kaart 9
Küsimus
How is photon energy related to frequency and wavelength?
Vastus
.
Higher frequency and shorter wavelength mean greater photon energy.
Kaart 10
Küsimus
How is standard cell potential calculated from reduction potentials?
Vastus
.
Use both tabulated values as reductions; do not multiply potentials by stoichiometric coefficients.
Kaart 11
Küsimus
Which SI base units cover the quantities most often used in MCAT mechanics and circuits?
Vastus
Use meters (m) for length, kilograms (kg) for mass, seconds (s) for time, and amperes (A) for electric current. Amount of substance uses moles (mol), and thermodynamic temperature uses kelvin (K).
Kaart 12
Küsimus
How do you convert Celsius temperature to kelvin for gas-law work?
Vastus
.
Gas-law temperatures must be absolute; a Celsius value cannot be inserted directly.
Kaart 13
Küsimus
Which relationship gives average acceleration over a time interval?
Vastus
.
Acceleration has SI units of .
Kaart 14
Küsimus
How is reaction rate related to a species concentration and its stoichiometric coefficient?
Vastus
For , .
The signs and coefficients make one reaction rate consistent across species.
Kaart 15
Küsimus
What electric-field magnitude does a point charge produce?
Vastus
.
The field points away from a positive source charge and toward a negative one.
Kaart 16
Küsimus
How do moles relate to the number of microscopic particles?
Vastus
, with .
Kaart 17
Küsimus
For constant acceleration, how does velocity change with time?
Vastus
.
Use it when acceleration is constant and the elapsed time is known.
Kaart 18
Küsimus
How is pOH defined?
Vastus
.
Kaart 19
Küsimus
How is specific gravity defined?
Vastus
.
It is dimensionless because it is a density ratio.
Kaart 20
Küsimus
How is an object's heat capacity related to heat and temperature change?
Vastus
.
Heat capacity applies to the whole object; specific heat is per unit mass.
Kaart 21
Küsimus
How are frequency and wavelength related for electromagnetic radiation in vacuum?
Vastus
.
Use .
Kaart 22
Küsimus
Which species are omitted from a heterogeneous equilibrium expression?
Vastus
Pure solids and pure liquids are omitted because their activities are effectively constant. Gases and dissolved species remain.
Kaart 23
Küsimus
What force does an electric field exert on a charge?
Vastus
.
A negative charge feels force opposite the field direction.
Kaart 24
Küsimus
Which equation relates pressure, volume, amount, and temperature for an ideal gas?
Vastus
.
Use absolute temperature and a gas constant whose units match pressure and volume.
Kaart 25
Küsimus
Which equation relates wave speed, frequency, and wavelength?
Vastus
.
The medium sets the wave speed; changing frequency then changes wavelength.
Kaart 26
Küsimus
What is the water-ion product at ?
Vastus
.
Its value changes with temperature.
Kaart 27
Küsimus
What base-unit dimensions define one newton?
Vastus
.
A force must have dimensions of mass times acceleration.
Kaart 28
Küsimus
How is cell potential related to reaction free energy?
Vastus
.
A positive galvanic-cell potential gives negative for the written reaction.
Kaart 29
Küsimus
For constant acceleration, how does displacement depend on time?
Vastus
.
Choose a positive direction first, then keep signs consistent.
Kaart 30
Küsimus
How is molarity defined?
Vastus
.
Use solution volume in liters, so molarity has units of .
Kaart 31
Küsimus
What electric potential does a point charge produce?
Vastus
.
Potential is scalar, so contributions from multiple charges add algebraically.
Kaart 32
Küsimus
Which relationship gives heat absorbed or released during a phase change?
Vastus
, or when latent heat is given per unit mass. Temperature stays constant during an ideal equilibrium phase change.
Kaart 33
Küsimus
Which constant-acceleration equation avoids time?
Vastus
.
It connects speed and displacement when time is absent.
Kaart 34
Küsimus
What is the general experimental rate-law form?
Vastus
.
The exponents are determined experimentally and need not equal overall-reaction coefficients.
Kaart 35
Küsimus
Which relationship defines pressure from a normal force?
Vastus
.
Pressure is scalar and measured in pascals.
Kaart 36
Küsimus
What pH–pOH relationship applies at ?
Vastus
.
More generally, .
Kaart 37
Küsimus
How is wave intensity related to transmitted power and area?
Vastus
.
Intensity is power per area, measured in .
Kaart 38
Küsimus
How is molality defined?
Vastus
.
Molality uses solvent mass, not solution volume, and is temperature-independent.
Kaart 39
Küsimus
What base-unit dimensions define one joule?
Vastus
.
Work, energy, and heat share this unit.
Kaart 40
Küsimus
What is the chemistry sign-convention form of the first law?
Vastus
.
means heat enters the system, and means work is done on the system.
Kaart 41
Küsimus
How is refractive index related to light speed in a medium?
Vastus
.
A larger refractive index means a lower phase speed in the material.
Kaart 42
Küsimus
What equation links net force and acceleration?
Vastus
.
The vector sum of external forces determines the acceleration.
Kaart 43
Küsimus
Which relationship compares two states of a fixed amount of ideal gas?
Vastus
.
It assumes the amount of gas is unchanged. Holding one variable constant gives Boyle's, Charles's, or Gay-Lussac's law.
Kaart 44
Küsimus
How is electric potential energy related to charge and voltage?
Vastus
.
A positive charge gains potential energy when moved to higher potential; a negative charge does the opposite.
Kaart 45
Küsimus
How are standard cell potential and the equilibrium constant related?
Vastus
.
At equilibrium, the Nernst equation gives .
Kaart 46
Küsimus
What is an object's weight near Earth's surface?
Vastus
.
Weight is a force in newtons; mass remains in kilograms.
Kaart 47
Küsimus
How are and related for an ideal-gas reaction?
Vastus
.
is gaseous product coefficients minus gaseous reactant coefficients.
Kaart 48
Küsimus
How does pressure change with depth in a static incompressible fluid?
Vastus
.
is depth below the surface; the gauge pressure is .
Kaart 49
Küsimus
How do the units of a rate constant depend on overall reaction order ?
Vastus
when rate is in . For example, first-order has units of .
Kaart 50
Küsimus
Which relationship defines electric current?
Vastus
.
Conventional current points in the direction positive charge would move.
Kaart 51
Küsimus
What is the acid-dissociation expression for ?
Vastus
.
A larger means a stronger acid under comparable conditions.
Kaart 52
Küsimus
What equation governs refraction at a boundary?
Vastus
.
Angles are measured from the normal, not the surface.
Kaart 53
Küsimus
How is mole fraction defined for component ?
Vastus
.
Mole fractions are dimensionless and sum to 1.
Kaart 54
Küsimus
What SI units and base dimensions define pressure?
Vastus
Pressure is measured in pascals: .
Kaart 55
Küsimus
What pressure–volume work occurs against constant external pressure?
Vastus
.
Expansion has and therefore negative work on the system.
Kaart 56
Küsimus
How does intensity from an isotropic point source vary with distance?
Vastus
.
Doubling distance reduces intensity to one quarter if absorption is negligible.
Kaart 57
Küsimus
How large can static friction become before slipping begins?
Vastus
, with .
Static friction matches the needed opposing force up to its maximum; it isn't always equal to .
Kaart 58
Küsimus
Which relationship handles dilution when solute amount is conserved?
Vastus
.
It applies when solvent is added without reaction or solute loss.
Kaart 59
Küsimus
What is Ohm's law for an ohmic element?
Vastus
.
It applies when resistance is approximately constant over the operating range.
Kaart 60
Küsimus
How is the reaction quotient constructed?
Vastus
Use the same expression as , but insert the current—not necessarily equilibrium—activities or concentrations.
Kaart 61
Küsimus
What is the usual model for kinetic friction on a sliding surface?
Vastus
.
The force points opposite the relative sliding motion.
Kaart 62
Küsimus
What is the base-dissociation expression for ?
Vastus
.
Kaart 63
Küsimus
What equation expresses Pascal's principle in a hydraulic device?
Vastus
.
An applied pressure change is transmitted through a confined incompressible fluid.
Kaart 64
Küsimus
How much charge passes through a cell carrying constant current?
Vastus
.
Use amperes and seconds to obtain coulombs.
Kaart 65
Küsimus
What is the critical-angle condition for total internal reflection?
Vastus
when .
Total internal reflection occurs only when light starts in the higher-index medium and .
Kaart 66
Küsimus
How is total pressure related to component pressures in an ideal gas mixture?
Vastus
.
Dalton's law treats each gas as contributing its own partial pressure.
Kaart 67
Küsimus
How is the coulomb expressed through SI base units?
Vastus
.
Charge equals current multiplied by time.
Kaart 68
Küsimus
How is standard reaction enthalpy obtained from standard formation enthalpies?
Vastus
.
Kaart 69
Küsimus
How is sound intensity level in decibels defined?
Vastus
.
The reference intensity is commonly .
Kaart 70
Küsimus
What is the integrated rate law for a zero-order reactant?
Vastus
.
A plot of versus time is linear with slope .
Kaart 71
Küsimus
How does a uniform wire's resistance depend on material and geometry?
Vastus
.
Longer wires have more resistance; larger cross-sectional area lowers it. Here is resistivity.
Kaart 72
Küsimus
Which equation gives the magnitude of torque from a force?
Vastus
.
Here is the perpendicular lever arm from the pivot to the force's line of action.
Kaart 73
Küsimus
How is mass percent composition calculated?
Vastus
.
Kaart 74
Küsimus
What buoyant force acts on a submerged object?
Vastus
.
It equals the weight of displaced fluid.
Kaart 75
Küsimus
How is related to ?
Vastus
.
Lower corresponds to the stronger acid.
Kaart 76
Küsimus
What two conditions define static mechanical equilibrium?
Vastus
and .
Both translational and rotational equilibrium are required.
Kaart 77
Küsimus
How does Hess's law combine reaction enthalpies?
Vastus
Add the manipulated step equations and add their values. Reversing a step changes the sign; multiplying a step multiplies by the same factor.
Kaart 78
Küsimus
Which equivalent forms give electrical power in a resistor?
Vastus
.
Choose the form that uses the known current, voltage, and resistance.
Kaart 79
Küsimus
How does mole fraction determine an ideal gas's partial pressure?
Vastus
, where .
Kaart 80
Küsimus
What decibel change corresponds to multiplying sound intensity by 10?
Vastus
A tenfold intensity increase adds because . A hundredfold increase adds .
Kaart 81
Küsimus
How does comparing with predict reaction direction?
Vastus
If , the forward direction is favored. If , the reverse direction is favored. If , the system is at equilibrium.
Kaart 82
Küsimus
Which equation relates object, image, and focal distances for a thin lens or spherical mirror?
Vastus
.
Use the adopted sign convention consistently; positive usually denotes a real image.
Kaart 83
Küsimus
How do charge and Faraday's constant give moles of electrons?
Vastus
, where .
Kaart 84
Küsimus
How is the volt expressed through joules and coulombs?
Vastus
.
Voltage is energy transferred per unit charge.
Kaart 85
Küsimus
How is related to ?
Vastus
.
Kaart 86
Küsimus
What work is done by a constant force through a displacement?
Vastus
.
is the angle between the force and displacement; perpendicular force does zero work.
Kaart 87
Küsimus
How is volume percent calculated for a liquid mixture?
Vastus
.
Use it only when the problem defines composition by volume.
Kaart 88
Küsimus
How do resistors combine in series?
Vastus
.
Series elements carry the same current and their voltage drops add.
Kaart 89
Küsimus
What is the half-life of a zero-order reactant?
Vastus
.
Unlike first-order half-life, it depends on starting concentration.
Kaart 90
Küsimus
How is volumetric flow rate related to cross-sectional area and speed?
Vastus
.
has SI units of and assumes the average speed across the section.
180 kaarti
MCAT Physics & Chemistry Equation Flashcards: Formulas, Units & When to Use Them
Õpi seda kaardipakki tasutaNibomo avaneb, et saaksid õppimist alustada.
Kaart 91
Küsimus
How can average bond energies estimate reaction enthalpy?
Vastus
.
Breaking bonds costs energy; forming bonds releases it.
Kaart 92
Küsimus
What is the translational kinetic energy of a point mass?
Vastus
.
Kinetic energy is a scalar measured in joules.
Kaart 93
Küsimus
What ratio defines parts per million by mass?
Vastus
.
For dilute aqueous solutions, is often approximately when density is near .
Kaart 94
Küsimus
How do resistors combine in parallel?
Vastus
.
Parallel branches share the same voltage, and the equivalent resistance is below the smallest branch resistance.
Kaart 95
Küsimus
How are the dissociation constants of a conjugate acid–base pair related?
Vastus
.
At , .
Kaart 96
Küsimus
How do powers of ten combine when multiplying quantities in scientific notation?
Vastus
Multiply the coefficients and add the exponents: . Then normalize the result so its final coefficient satisfies ; a coefficient of exactly 10 becomes 1 while the exponent increases by 1.
Kaart 97
Küsimus
How many moles of a product requiring electrons per mole form during electrolysis?
Vastus
.
This is the ideal Faraday-law result before any stated efficiency correction.
Kaart 98
Küsimus
How is lateral magnification related to image and object distances?
Vastus
.
A negative magnification indicates inversion; gives the size ratio.
Kaart 99
Küsimus
What is the average translational kinetic energy per mole of an ideal gas?
Vastus
.
It depends only on absolute temperature, not molecular identity.
Kaart 100
Küsimus
What are the allowed frequencies of a string fixed at both ends?
Vastus
for .
Both ends are nodes, so every positive integer harmonic is allowed.
Kaart 101
Küsimus
How does reversing a reaction change its equilibrium constant?
Vastus
.
Kaart 102
Küsimus
What does the work–energy theorem say?
Vastus
.
Net work changes kinetic energy, even when individual forces are nonconservative.
Kaart 103
Küsimus
What entropy change accompanies reversible heat transfer at constant temperature?
Vastus
.
Temperature must be in kelvin.
Kaart 104
Küsimus
What does Kirchhoff's junction rule require?
Vastus
.
It follows from conservation of charge at a node.
Kaart 105
Küsimus
Which equation estimates the pH of a buffer made from a weak acid and its conjugate base?
Vastus
.
Henderson–Hasselbalch works best when both buffer components are present in meaningful amounts.
Kaart 106
Küsimus
What continuity relationship applies to steady incompressible flow?
Vastus
.
A narrower section has a larger average speed when the same volume passes each second.
Kaart 107
Küsimus
A liquid has known density and volume. Which rearranged density relationship gives its mass?
Vastus
.
Here is mass, is density, and is volume; use compatible units when density and volume are known. For example, of a solution has mass .
Kaart 108
Küsimus
What is local gravitational potential energy near Earth's surface?
Vastus
.
Only changes matter: when is approximately constant.
Kaart 109
Küsimus
What is the integrated rate law for a first-order reactant?
Vastus
.
A plot of versus time is linear with slope .
Kaart 110
Küsimus
What are the allowed frequencies of a pipe open at both ends?
Vastus
for .
Both open ends are displacement antinodes.
Kaart 111
Küsimus
Which equation relates Gibbs free energy, enthalpy, and entropy at constant temperature?
Vastus
.
Use compatible energy units and absolute temperature.
Kaart 112
Küsimus
What does Kirchhoff's loop rule require?
Vastus
around any closed loop.
Voltage rises and drops must be assigned consistently with the chosen traversal direction.
Kaart 113
Küsimus
What elastic potential energy is stored in an ideal spring?
Vastus
.
is displacement from equilibrium and has units of .
Kaart 114
Küsimus
How does multiplying every reaction coefficient by a factor change ?
Vastus
.
Dividing coefficients by takes the corresponding root.
Kaart 115
Küsimus
How can you estimate the order of magnitude of a quotient without a calculator?
Vastus
Divide the leading coefficients and subtract powers of ten: . Normalize the result so its final coefficient satisfies ; if the coefficient is exactly 10, write it as 1 and increase the exponent by 1.
Kaart 116
Küsimus
How is lens power related to focal length?
Vastus
with in meters.
Power is measured in diopters; converging lenses have positive power and diverging lenses negative power.
Kaart 117
Küsimus
How does root-mean-square molecular speed depend on molar mass?
Vastus
.
Use molar mass in ; lighter gases move faster at the same temperature.
Kaart 118
Küsimus
Which equation relates pressure, speed, and height along ideal fluid flow?
Vastus
.
Bernoulli's equation assumes steady, incompressible, nonviscous flow along a streamline.
Kaart 119
Küsimus
What is the Nernst equation for a cell reaction?
Vastus
.
At , .
Kaart 120
Küsimus
What force does an ideal spring exert?
Vastus
.
The minus sign means the spring force points back toward equilibrium.
Kaart 121
Küsimus
What conjugate-base-to-acid ratio gives a target buffer pH?
Vastus
.
This is Henderson–Hasselbalch solved for the composition ratio.
Kaart 122
Küsimus
Which relationship defines capacitance?
Vastus
.
Capacitance is charge stored per potential difference and is measured in farads.
Kaart 123
Küsimus
How do elemental mass percentages lead to an empirical formula?
Vastus
Convert each element's mass to moles, divide every mole amount by the smallest, then multiply to obtain the smallest whole-number ratio. The retrieval target is the mole ratio, not the mass ratio.
Kaart 124
Küsimus
When can mechanical energy be conserved?
Vastus
when only conservative forces do work. With nonconservative work, use .
Kaart 125
Küsimus
What sign of indicates a thermodynamically spontaneous forward process at constant temperature and pressure?
Vastus
. At equilibrium ; favors the reverse direction. Spontaneity does not say the reaction is fast.
Kaart 126
Küsimus
Which metric-prefix factors correspond to milli-, micro-, and nano-?
Vastus
Milli is , micro is , and nano is . Each step is a factor of .
Kaart 127
Küsimus
What is the pH at the half-equivalence point of a weak-acid/strong-base titration?
Vastus
.
Half of the original weak acid has become conjugate base, so .
Kaart 128
Küsimus
What are the allowed frequencies of a pipe closed at one end?
Vastus
for odd .
The closed end is a displacement node and the open end is an antinode.
Kaart 129
Küsimus
What is the half-life of a first-order reaction?
Vastus
.
It is independent of initial concentration.
Kaart 130
Küsimus
How is the focal length of a spherical mirror related to its radius of curvature?
Vastus
.
This paraxial approximation applies to rays near the principal axis.
Kaart 131
Küsimus
How is a molecular formula obtained from an empirical formula?
Vastus
, then multiply every empirical subscript by the integer .
Kaart 132
Küsimus
What is the capacitance of an ideal parallel-plate capacitor?
Vastus
.
Larger plate area or dielectric constant raises capacitance; greater separation lowers it.
Kaart 133
Küsimus
What does Graham's law predict for two gas effusion rates?
Vastus
.
At the same temperature, effusion rate is inversely proportional to the square root of molar mass.
Kaart 134
Küsimus
Which relationship gives laminar flow through a cylindrical tube?
Vastus
.
Poiseuille flow is extremely sensitive to radius and assumes a Newtonian fluid in a long rigid tube.
Kaart 135
Küsimus
How do equilibrium constants combine when reactions are added?
Vastus
Multiply them: .
Reverse or scale each component reaction before applying the reciprocal or power rule.
Kaart 136
Küsimus
Which relationship defines average power?
Vastus
.
Power is the rate of energy transfer and is measured in watts, where .
Kaart 137
Küsimus
What voltage does an ideal concentration cell produce at ?
Vastus
for the simple same-ion setup. The voltage vanishes when concentrations equalize.
Kaart 138
Küsimus
Which equivalent forms give energy stored in a capacitor?
Vastus
.
Use the form matching the known variables.
Kaart 139
Küsimus
How is standard free-energy change related to the equilibrium constant?
Vastus
.
A large corresponds to negative .
Kaart 140
Küsimus
What instantaneous power is delivered by a force to a moving object?
Vastus
.
Only the force component parallel to velocity transfers energy at that instant.
Kaart 141
Küsimus
How is percent yield calculated?
Vastus
.
Kaart 142
Küsimus
What condition gives constructive interference in a double-slit experiment?
Vastus
for integers .
For small angles on a screen, fringe position is approximately .
Kaart 143
Küsimus
What stoichiometric condition marks acid–base equivalence?
Vastus
Acid equivalents equal base equivalents: . For molarity and volume, .
Kaart 144
Küsimus
What value is useful for the speed of light in vacuum?
Vastus
Use . In a material, light travels at .
Kaart 145
Küsimus
Which Doppler relationship applies to collinear motion in a stationary medium?
Vastus
.
Choose signs that raise when source and observer approach and lower it when they separate.
Kaart 146
Küsimus
What is the integrated rate law for a second-order reaction in one reactant?
Vastus
.
A plot of versus time is linear with slope .
Kaart 147
Küsimus
What dimensionless quantity helps predict laminar versus turbulent pipe flow?
Vastus
.
Lower Reynolds number favors laminar flow; higher values make turbulence more likely.
Kaart 148
Küsimus
How is reaction free energy related to standard free energy and reaction quotient?
Vastus
.
This predicts the favorable direction under nonstandard conditions.
Kaart 149
Küsimus
What is linear momentum?
Vastus
.
Momentum is a vector with SI units of .
Kaart 150
Küsimus
How do you identify the limiting reactant from available moles?
Vastus
Compare for each reactant, where is its stoichiometric coefficient. The smallest ratio runs out first and sets the reaction extent.
Kaart 151
Küsimus
How do capacitors combine in parallel?
Vastus
.
Parallel capacitors share voltage and their stored charges add.
Kaart 152
Küsimus
How do you estimate the pH of a dilute strong monoprotic acid of concentration ?
Vastus
Assuming complete dissociation and negligible water autoionization, and .
Kaart 153
Küsimus
What relationship connects impulse and momentum change?
Vastus
. For a constant force, .
Kaart 154
Küsimus
What is the solubility-product expression for ?
Vastus
.
The solid is omitted; dissolved-ion concentrations carry their stoichiometric exponents.
Kaart 155
Küsimus
What condition gives minima from a single slit of width ?
Vastus
for .
The central maximum lies between the first minima.
Kaart 156
Küsimus
Which way do electrons flow in both galvanic and electrolytic cells?
Vastus
Electrons flow through the external circuit from anode to cathode. Oxidation is always at the anode; reduction is always at the cathode.
Kaart 157
Küsimus
How do capacitors combine in series?
Vastus
.
Series capacitors carry equal charge magnitude, and the equivalent capacitance is below the smallest one.
Kaart 158
Küsimus
Which equation adds molecular size and attraction corrections to the ideal gas law?
Vastus
.
The term corrects attractions; corrects finite molecular volume.
Kaart 159
Küsimus
What beat frequency is heard from two nearby tones?
Vastus
.
Beats arise from alternating constructive and destructive interference.
Kaart 160
Küsimus
What near-Earth gravitational acceleration is useful for MCAT estimates?
Vastus
Use , or for quick order-of-magnitude work when the choices allow it.
Kaart 161
Küsimus
What weak-acid approximation estimates for initial concentration ?
Vastus
when dissociation is small compared with . Check that the resulting ionization is roughly below 5%.
Kaart 162
Küsimus
Why does a constriction in a horizontal ideal-fluid tube usually have lower static pressure?
Vastus
Continuity raises the speed in the narrow section, and Bernoulli's relationship then requires lower static pressure when height is unchanged. This is the Venturi effect.
Kaart 163
Küsimus
How does a solid's length change for a small temperature shift?
Vastus
.
is the linear expansion coefficient; the approximation assumes it stays nearly constant.
Kaart 164
Küsimus
When is total linear momentum conserved?
Vastus
when the net external impulse on the chosen system is zero. Internal forces can redistribute momentum without changing the total.
Kaart 165
Küsimus
What relationship connects absorbance and concentration in a dilute solution?
Vastus
.
Beer–Lambert law uses molar absorptivity , path length , and concentration ; it is most reliable in the linear dilute range.
Kaart 166
Küsimus
What magnetic force acts on a moving charge?
Vastus
.
The force is perpendicular to both velocity and magnetic field, so it changes direction but does no work.
Kaart 167
Küsimus
How does the Arrhenius equation relate rate constant and temperature?
Vastus
. Equivalently, . Higher temperature or lower activation energy increases .
Kaart 168
Küsimus
What is centripetal acceleration for uniform circular motion?
Vastus
.
It points toward the center even when speed is constant.
Kaart 169
Küsimus
How do ions in a salt bridge move to maintain electroneutrality in a galvanic cell?
Vastus
Anions migrate toward the anode compartment, where oxidation creates excess positive charge. Cations migrate toward the cathode compartment, where reduction creates relative excess negative charge by consuming cations or producing anions. These migrations maintain charge neutrality.
Kaart 170
Küsimus
What is the maximum kinetic energy in the photoelectric effect?
Vastus
.
Electrons are emitted when . Exactly at threshold, and ; positive kinetic energy requires .
Kaart 171
Küsimus
What molar volume is a useful ideal-gas reference at and ?
Vastus
About .
This shortcut is tied to those stated conditions, not every convention labeled STP.
Kaart 172
Küsimus
What is the period of an ideal mass–spring oscillator?
Vastus
.
The small-amplitude period depends on mass and spring stiffness, not amplitude.
Kaart 173
Küsimus
For , how is related to molar solubility in pure water?
Vastus
.
This relation changes when a common ion is already present.
Kaart 174
Küsimus
What does a dimensional-consistency check require of an equation?
Vastus
Every term that is added or equated must have the same dimensions. A mismatch, such as adding energy to force, proves the equation or unit conversion is wrong.
Kaart 175
Küsimus
How is percent ionization of a weak acid calculated?
Vastus
for a monoprotic acid. Dilution generally raises percent ionization even while lowering .
Kaart 176
Küsimus
What pressure difference does surface tension create across one spherical liquid–gas interface?
Vastus
.
For a soap bubble with two interfaces, . Smaller radii require larger pressure differences.
Kaart 177
Küsimus
What energy balance applies in an insulated calorimetry problem?
Vastus
, so heat lost by hotter parts equals heat gained by colder parts and the calorimeter. Include every component named in the setup.
Kaart 178
Küsimus
What radius does a charged particle follow when moving perpendicular to a uniform magnetic field?
Vastus
.
The magnetic force supplies centripetal force; faster or heavier particles curve less.
Kaart 179
Küsimus
How do you find concentration after mixing solutions of the same nonreacting solute?
Vastus
when volumes are additive. If the solutes react, do stoichiometry before calculating the remaining concentration.
Kaart 180
Küsimus
What net inward force is required for circular motion?
Vastus
.
“Centripetal force” is the inward net force supplied by real forces, not an extra force.
180 kaarti
MCAT Physics & Chemistry Equation Flashcards: Formulas, Units & When to Use Them
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