Difference Between

Difference Between Aerobic and Anaerobic

Nex Virox Team
Written byNex Virox Team
Editorial Team
Varshal Nirbhavane
Senior SEO & Organic Growth Professional · 5+ years
18 min read
Quick answer

The main difference between Aerobic and Anaerobic is that aerobic processes require oxygen to produce energy, while anaerobic processes do not. Aerobic is oxygen-dependent energy production yielding more ATP, while Anaerobic is oxygen-free energy production yielding less ATP and lactic acid.

Key takeaways

  • Core distinction: Aerobic means with oxygen; anaerobic means without oxygen. This determines energy production pathways.
  • How each works: Aerobic uses oxygen to burn fat and carbs slowly; anaerobic uses stored ATP and glucose without oxygen.
  • Cost and performance: Aerobic sustains low-to-moderate effort for long durations; anaerobic powers short, high-intensity bursts lasting seconds.
  • Best-fit use case: Choose aerobic for endurance events like jogging; choose anaerobic for sprints, lifting, or HIIT workouts.
  • Common decision mistake: Treating them as opposites when most sports blend both systems; training only one limits overall fitness.

Difference Between Aerobic and Anaerobic: Comparison Table

AspectAerobicAnaerobic
DefinitionProcess using oxygen to produce energy from glucose or fat.Process producing energy without oxygen, relying on stored fuel.
PurposeSustains prolonged activity by generating ATP through oxidative phosphorylation.Powers short, intense bursts when oxygen delivery cannot keep pace.
Core MechanismOxygen drives the electron transport chain to yield up to 36 ATP per glucose.Glycolysis splits glucose without oxygen, yielding only 2 ATP per glucose.
Energy YieldProduces roughly 18 times more ATP per glucose molecule than anaerobic pathways.Yields just 2 ATP per glucose, requiring much larger fuel consumption.
ByproductsGenerates carbon dioxide and water, which are easily expelled.Produces lactic acid or ethanol, causing muscle burn and fatigue.
Oxygen RequirementRequires continuous oxygen supply from breathing and circulation.Functions without oxygen, using internal energy reserves instead.
DurationSupports activity lasting from several minutes to hours without stopping.Fuels effort lasting from a few seconds up to roughly two minutes.
Intensity LevelOperates at low to moderate intensity, around 50-85% of maximum heart rate.Handles high to maximal intensity, exceeding 85% of maximum heart rate.
Speed of EnergyDelivers ATP slowly but steadily, matching sustained muscle demand.Provides ATP almost instantly, ideal for explosive movements.
Fuel SourceBurns primarily fat, with carbohydrate contributing as intensity rises.Uses only stored glycogen or phosphocreatine for immediate energy.
Primary LocationOccurs in mitochondria, the cell's energy-producing organelles.Takes place in the cytoplasm, outside the mitochondria.
Muscle FibersRecruits slow-twitch (Type I) fibers built for endurance.Activates fast-twitch (Type II) fibers built for power.
Heart ResponseKeeps heart rate elevated but steady, typically 120-150 beats per minute.Spikes heart rate rapidly toward maximum, often above 160 beats per minute.
Breathing PatternMaintains deep, rhythmic breathing matched to oxygen demand.Causes rapid, shallow breathing that cannot fully repay oxygen debt.
Recovery TimeRecovers quickly, with heart rate returning to normal within minutes.Requires longer rest, often several minutes, to clear lactic acid.
Calorie BurnBurns more fat calories during the session but fewer total calories per minute.Burns more total calories per minute, mostly from carbohydrate stores.
Afterburn EffectRaises metabolism modestly for a short period after exercise stops.Elevates post-exercise oxygen consumption for hours, burning extra calories.
Muscle BuildingBuilds endurance but adds little muscle mass or strength.Stimulates muscle hypertrophy and strength gains through high tension.
Bone DensityProvides modest bone maintenance through repeated low-impact movement.Increases bone density significantly due to high-impact loading forces.
Cardiovascular BenefitStrengthens the heart muscle and improves stroke volume over time.Improves cardiac power but offers less benefit to resting heart rate.
Lactic AcidDoes not produce lactic acid, so muscle burn is absent.Generates lactic acid that accumulates, causing the burning sensation.
Oxygen DebtIncurs no oxygen debt because oxygen supply matches demand.Creates an oxygen debt repaid by heavy breathing after exertion.
Typical ActivitiesIncludes running, swimming, cycling, and brisk walking at steady paces.Includes sprinting, weightlifting, jumping, and high-intensity interval training.
Equipment NeededRequires minimal gear, often just comfortable shoes and open space.Often needs weights, resistance bands, or gym machines for overload.
Skill LevelAccessible to beginners with low injury risk and simple technique.Demands proper form and experience to prevent strains and injuries.
Injury RiskPoses low risk of acute injury due to steady, repetitive motion.Carries higher risk of muscle tears, joint stress, and sudden strain.
Fat AdaptationImproves the body's ability to burn fat for fuel over weeks.Offers little fat adaptation, relying instead on carbohydrate stores.
Immune FunctionModerate aerobic work enhances immune surveillance and reduces illness risk.Very intense anaerobic bouts may temporarily suppress immune response.
Hormonal ResponseReleases endorphins and reduces cortisol, promoting calm and stress relief.Spikes adrenaline and testosterone, boosting alertness and aggression.
Best-Fit ScenarioIdeal for marathon training, weight management, and heart health programs.Best for sports requiring power, sprint speed, or muscle size gains.

What Is Aerobic?

Aerobic is a biological process that requires oxygen to generate energy. It uses oxygen to break down carbohydrates, fats, and proteins into usable fuel. This process exists because oxygen allows cells to produce far more energy than oxygen-free methods.

Definition of Aerobic

Aerobic refers to any metabolic process that occurs in the presence of oxygen. In cellular respiration, aerobic pathways convert glucose and oxygen into carbon dioxide, water, and adenosine triphosphate. This oxygen-dependent mechanism yields approximately 36-38 ATP molecules per glucose unit.

Key Characteristics of Aerobic

CharacteristicWhat It Means in Practice
Oxygen dependenceRequires continuous oxygen supply to sustain energy production during activity.
High ATP yieldProduces roughly 36-38 ATP molecules per glucose, far exceeding anaerobic output.
Slow energy releaseEnergy generation is gradual, supporting prolonged efforts rather than explosive bursts.
Carbon dioxide outputReleases CO2 as a byproduct, which you exhale during sustained exercise.
Water productionGenerates metabolic water as a final byproduct of the electron transport chain.
Mitochondrial locationOccurs inside mitochondria, the cell's specialised energy-producing organelles.
Fat utilisationCan burn stored fat as fuel, making it essential for long-duration endurance work.
Low lactate build-upDoes not produce lactic acid, so muscle fatigue onset is delayed significantly.
Heart rate zoneTypically operates at 50-85% of maximum heart rate during exercise sessions.
Endurance capacitySupports continuous activity lasting beyond several minutes up to hours.

Common Examples of Aerobic

  • Running - a steady jog keeps your heart rate elevated and oxygen flowing for miles.
  • Cycling - continuous pedalling engages large muscle groups with rhythmic breathing for extended periods.
  • Swimming - full-body strokes demand consistent oxygen intake to sustain lap after lap.
  • Brisk walking - a fast pace raises heart rate without exceeding your aerobic threshold.
  • Rowing - repeated strokes require coordinated breathing and sustained oxygen delivery.
  • Jump rope - rhythmic skipping maintains steady aerobic effort with minimal rest breaks.
  • Dancing - continuous choreographed movement keeps your body in an oxygen-burning zone.
  • Hiking - uphill trails challenge your lungs and heart over long durations.
  • Elliptical training - low-impact machine work keeps motion constant and aerobic.
  • Cross-country skiing - whole-body propulsion demands high oxygen consumption for long stretches.

Advantages and Limitations of Aerobic

AdvantagesLimitations
Produces abundant energy per fuel molecule, sustaining hours of moderate activity.Cannot generate rapid power, making it useless for sudden sprints or heavy lifts.
Strengthens the heart and lungs, improving cardiovascular efficiency over time.Requires minutes to fully activate, leaving you underpowered at the start.
Burns stored fat effectively, supporting weight management and metabolic health.Demands continuous oxygen delivery, which becomes impossible during breath-holding.
Builds mitochondrial density, enhancing cellular energy capacity permanently.Produces energy too slowly for max-effort movements lasting under 10 seconds.
Reduces resting heart rate and blood pressure with consistent training.Loses efficiency at high intensities where oxygen supply cannot match demand.
Improves mood through endorphin release and reduced stress hormone levels.Offers limited muscle-building stimulus compared to resistance training.
Enhances immune function and reduces chronic disease risk when performed regularly.Cannot be sustained without adequate carbohydrate stores during very long events.
Improves recovery speed between bouts of intense anaerobic work.Becomes inefficient if you exceed your lactate threshold during exercise.
Accessible to beginners with low-impact options like walking and swimming.Creates repetitive joint stress in high-impact forms like running on hard surfaces.
Develops capillary networks, improving oxygen delivery to working muscles.Produces zero fast-twitch fibre recruitment, leaving explosive power undeveloped.

What Is Anaerobic?

Anaerobic is a biological process that functions without oxygen. It breaks down glucose through glycolysis to produce energy, generating lactic acid or ethanol as byproducts. This system exists to provide rapid ATP during intense, short-duration efforts when oxygen delivery cannot meet muscular demand.

Definition of Anaerobic

Anaerobic refers to metabolic pathways that generate adenosine triphosphate (ATP) without molecular oxygen as the final electron acceptor. Glycolysis followed by fermentation yields 2 ATP per glucose molecule, producing lactate or alcohol and carbon dioxide. This mechanism supports maximal-intensity work lasting seconds to roughly two minutes.

Key Characteristics of Anaerobic

CharacteristicWhat It Means in Practice
No oxygen useEnergy production proceeds without requiring inhaled oxygen, enabling immediate power output.
Rapid ATP yieldGenerates ATP quickly, but only 2 molecules per glucose versus 36 in aerobic.
Lactate productionPyruvate converts to lactate, lowering muscle pH and contributing to fatigue.
Short durationSustains maximal effort for approximately 10 to 120 seconds before exhaustion.
High intensitySupports activities at 90-100% of maximum effort where oxygen demand exceeds supply.
Fast fuel supplyUses stored muscle glycogen and phosphocreatine for immediate energy availability.
No mitochondriaPathways occur in the cytoplasm, independent of mitochondrial oxidative machinery.
Byproduct buildupHydrogen ions accumulate, causing burning sensation and reduced contraction force.
Recovery costRequires oxygen debt repayment post-exercise to clear lactate and restore homeostasis.
Training adaptiveRepeated sessions boost enzyme activity and buffering capacity within weeks.

Common Examples of Anaerobic

  • Sprint running – a 100-meter dash relies on phosphocreatine and glycolysis for maximal speed.
  • Heavy weightlifting – a one-rep max squat demands instantaneous force without oxidative metabolism.
  • HIIT workouts – 30-second all-out intervals alternate high intensity with brief recovery periods.
  • Plyometric jumps – box jumps and depth jumps require explosive power exceeding aerobic capacity.
  • Rowing sprints – a 500-meter ergometer piece finishes before aerobic systems fully activate.
  • Swimming sprints – a 50-meter freestyle race is completed in under 30 seconds.
  • Cycling hill charges – standing bursts up steep gradients recruit fast-twitch muscle fibers.
  • Basketball fast breaks – a full-court drive to the hoop is a 5-8 second explosive effort.
  • Boxing combinations – a 10-punch flurry lasts seconds and depletes immediate ATP stores.
  • Rock climbing moves – a difficult boulder problem requires brief, maximal muscular contractions.

Advantages and Limitations of Anaerobic

AdvantagesLimitations
Produces energy instantly for explosive movements.Yields only 2 ATP per glucose, far less efficient than aerobic respiration.
Operates without needing oxygen delivery to muscles.Cannot sustain activity beyond roughly two minutes at maximal intensity.
Builds muscle mass and power through heavy resistance.Lactate accumulation causes severe burning and forces premature cessation.
Improves speed and reaction time for competitive athletes.Generates reactive oxygen species that contribute to cellular damage.
Raises metabolic rate for hours after the session ends.Requires longer recovery periods between bouts than aerobic work.
Enhances bone density through high-impact loading forces.High injury risk from explosive movements on unprepared joints.
Boosts fast-twitch fiber recruitment and neuromuscular coordination.Produces no cardiovascular endurance benefit for sustained efforts.
Increases glycolytic enzyme activity with consistent training.Heavy reliance on glycogen stores means rapid depletion during repeated sets.
Delivers functional strength for daily lifting tasks.Elevates blood pressure sharply, risky for untrained or hypertensive individuals.
Requires shorter total workout time for equivalent stimulus.Overtraining without adequate rest leads to performance plateaus or regression.

Similarities Between Aerobic and Anaerobic

Shared AspectHow Aerobic and Anaerobic Are Alike
Energy ProductionBoth aerobic and anaerobic processes generate cellular energy in the form of adenosine triphosphate for the body.
Primary PurposeThe primary purpose of both aerobic and anaerobic exercise is to improve physical fitness and overall health.
Muscle RecruitmentBoth aerobic and anaerobic activities require skeletal muscle contractions to produce movement and generate force.
Calorie ExpenditureBoth aerobic and anaerobic exercise burn calories, which supports weight management and metabolic health goals.
Heart RateBoth aerobic and anaerobic training elevate heart rate above resting levels to meet increased oxygen demands.
Breathing RateBoth aerobic and anaerobic workouts increase ventilation and breathing frequency to support working muscles.
Exercise CategoryBoth aerobic and anaerobic modalities fall under the broader category of physical activity and structured exercise training.
Glucose UsageBoth aerobic and anaerobic systems rely on glucose as a primary fuel source for energy metabolism.
Training AdaptationsBoth aerobic and anaerobic training stimulate physiological adaptations that enhance performance and endurance capacity.
Recovery NeedsBoth aerobic and anaerobic sessions require rest periods to allow muscle repair and replenish energy stores.
Injury RiskBoth aerobic and anaerobic exercise carry inherent injury risks if performed with poor form or excessive intensity.
Progressive OverloadBoth aerobic and anaerobic programs benefit from gradually increasing intensity, duration, or frequency to improve fitness.
Warm-Up RequirementBoth aerobic and anaerobic workouts should begin with a warm-up to prepare muscles and joints for activity.
Cool-Down PracticeBoth aerobic and anaerobic exercise sessions benefit from a cool-down period to gradually lower heart rate.
Hydration NeedsBoth aerobic and anaerobic activities increase fluid loss through sweat, requiring adequate water intake before and after.
Fitness MetricsBoth aerobic and anaerobic performance can be measured using duration, intensity, heart rate, and perceived exertion.
Lactate ProductionBoth aerobic and anaerobic exercise produce lactate as a byproduct, though aerobic produces it at much lower rates.
Insulin SensitivityBoth aerobic and anaerobic training improve insulin sensitivity and help regulate blood sugar levels effectively.
Cardiovascular StressBoth aerobic and anaerobic exercise place demands on the cardiovascular system to deliver oxygen and nutrients.
Mental BenefitsBoth aerobic and anaerobic exercise release endorphins that reduce stress, anxiety, and symptoms of depression.
Bone DensityBoth aerobic and anaerobic weight-bearing activities help maintain or increase bone mineral density over time.
Metabolic RateBoth aerobic and anaerobic exercise elevate basal metabolic rate for hours following the completion of the session.
Skill ComponentBoth aerobic and anaerobic activities require motor coordination and technique to execute movements safely and efficiently.
Equipment OptionsBoth aerobic and anaerobic exercise can be performed with minimal equipment like body weight or simple free weights.
Time CommitmentBoth aerobic and anaerobic training require consistent weekly time investment to produce meaningful fitness results.
Age SuitabilityBoth aerobic and anaerobic exercise can be adapted for children, adults, and older populations with appropriate modifications.
Fitness GoalsBoth aerobic and anaerobic training support common goals like fat loss, muscle tone, and improved athletic performance.
Energy SystemsBoth aerobic and anaerobic pathways operate simultaneously during exercise, with one dominating based on intensity.
Health OutcomesBoth aerobic and anaerobic exercise reduce risks of chronic diseases including heart disease, diabetes, and obesity.
Long-Term BenefitsBoth aerobic and anaerobic training contribute to longevity, functional independence, and quality of life in later years.

Aerobic or Anaerobic: Which Should You Choose?

Your goal decides it. Choose aerobic for fat burning, endurance, and heart health over long durations. Choose anaerobic for explosive power, muscle growth, and speed in short bursts. For most people, the deciding variable is whether your primary goal is stamina or strength.

When to Use Aerobic

Choose Aerobic when your goal is sustained endurance, improving cardiovascular health, or burning fat efficiently. It suits steady-state activities like jogging, cycling, or swimming lasting over two minutes. Aerobic training also fits beginners, recovery days, and anyone managing stress because it maintains a conversational pace.

When to Use Anaerobic

Choose Anaerobic when your goal is maximal power, muscle mass, or sprint speed in efforts under two minutes. It fits high-intensity interval training, weightlifting, and sprinting where oxygen demand exceeds supply. Anaerobic work also suits athletes needing explosive performance or those with limited time seeking maximum metabolic disruption.

Common Misconceptions About Aerobic and Anaerobic

Common MythThe Reality
Aerobic means exercise with oxygen and anaerobic means without any oxygen.Anaerobic exercise still uses oxygen for recovery; the term means energy demand exceeds the oxygen supply rate, not that oxygen is absent.
Anaerobic exercise is only for elite athletes and bodybuilders.Anaerobic activity includes everyday bursts like sprinting to a bus or lifting heavy boxes, so it applies to nearly everyone.
You burn fat only during aerobic exercise, not during anaerobic exercise.Anaerobic intervals trigger excess post-exercise oxygen consumption, which elevates fat oxidation for hours after the session ends.
Aerobic exercise is always low intensity, like walking or slow jogging.Aerobic training spans a wide intensity range up to about 85% of maximum heart rate, including tempo runs and vigorous cycling.
Anaerobic exercise builds no endurance or cardiovascular fitness.Anaerobic training improves stroke volume, lactate threshold and buffering capacity, all of which boost aerobic endurance performance.
Running is purely aerobic, and weightlifting is purely anaerobic.A 100-meter sprint is anaerobic while a 10K race is aerobic; both running and lifting use both energy systems depending on effort and duration.
Anaerobic exercise makes you bulky, while aerobic exercise keeps you lean.Muscle growth from anaerobic work is limited by genetics and calorie surplus; aerobic training alone can also increase muscle mass in beginners.
Aerobic exercise is the only way to improve heart health.Anaerobic resistance training lowers resting blood pressure and improves arterial function, providing independent cardiovascular benefits beyond aerobic work.
You must choose between aerobic or anaerobic; you cannot train both effectively.Concurrent training combining aerobic and anaerobic sessions is proven effective, though very high volumes of both may slightly blunt strength gains.
Anaerobic exercise causes more injuries than aerobic exercise.Both modes carry injury risks; anaerobic lifting risks acute strains while aerobic running risks overuse injuries like shin splints and stress fractures.
Aerobic exercise requires long sessions of 45 minutes or more to be beneficial.Aerobic benefits appear with sessions as short as 10 minutes; the American Heart Association recommends 150 weekly minutes, which can be split.
Anaerobic exercise is unsafe for older adults and people with heart conditions.Supervised anaerobic resistance training is safe and beneficial for seniors, improving bone density, balance and functional strength when properly progressed.
Your body switches completely from aerobic to anaerobic like flipping a switch.Both energy systems operate simultaneously; the anaerobic system contributes more as intensity rises, but aerobic oxidation continues throughout exercise.
Anaerobic exercise does not help with weight loss because it burns few calories.Anaerobic lifting burns fewer calories per minute than running, but it increases muscle mass, which raises resting metabolic rate for 24-48 hours.
Breathing hard during exercise means you have switched to anaerobic mode.Heavy breathing indicates high ventilatory demand from both systems; aerobic metabolism still dominates until you reach near-maximal effort.
Aerobic exercise is boring, and anaerobic exercise is always fun and exciting.Enjoyment depends on preference and context; many find steady-state jogging meditative while others find repeated sprints monotonous and grueling.
Anaerobic exercise requires expensive gym equipment or special gear.Bodyweight anaerobic exercises like squats, push-ups, and stair sprints require no equipment and deliver effective high-intensity training at home.
Aerobic exercise makes you lose muscle mass, so you must lift weights instead.Aerobic training alone does not significantly reduce muscle mass unless you are in a severe calorie deficit; combined training preserves muscle effectively.
Anaerobic exercise is measured only by how much weight you lift.Anaerobic effort includes sprint speed, jump height, and power output; any high-intensity activity lasting under two minutes is predominantly anaerobic.
If you can talk while exercising, you are definitely doing aerobic work.Conversational pace indicates low-intensity aerobic work, but you can also talk during light anaerobic recovery intervals between hard efforts.
Anaerobic exercise damages your immune system and makes you sick more often.Moderate anaerobic training enhances immune surveillance; only extreme, exhausting sessions without recovery may temporarily increase infection risk.
Aerobic exercise is the best choice for people with diabetes, not anaerobic.Anaerobic resistance training improves insulin sensitivity and glucose uptake independently, making it equally valuable for type 2 diabetes management.
Anaerobic exercise cannot be done daily because it always requires full recovery.Low-volume anaerobic sessions like short hill sprints or light plyometrics can be performed most days if intensity and volume are managed carefully.
Your body uses only carbohydrates during anaerobic exercise and only fat during aerobic.Anaerobic work uses creatine phosphate and carbs, but aerobic metabolism also burns carbs at higher intensities and fat at lower intensities.
Anaerobic exercise is the same as high-intensity interval training, or HIIT.HIIT includes both aerobic and anaerobic intervals; true anaerobic work involves near-maximal efforts that cannot be sustained beyond about two minutes.
Women should avoid anaerobic exercise because it will make them look masculine.Women have lower testosterone levels, so anaerobic training builds strength and tone without producing the same muscle size gains seen in men.
Aerobic exercise is the only way to improve your VO2 max.Anaerobic interval training raises VO2 max effectively, often matching or exceeding the gains from steady-state aerobic work in shorter total time.
Anaerobic exercise makes you feel sore, so soreness means you worked anaerobically.Delayed onset muscle soreness results from unfamiliar eccentric loading, which can occur in aerobic downhill running just as in anaerobic lifting.
You need to be fit before you can start anaerobic exercise.Anaerobic training can be scaled to any fitness level; beginners start with short intervals and long rests, progressing intensity gradually over weeks.
Aerobic and anaerobic exercise produce identical health benefits, so pick either one.Aerobic training excels at improving cardiac output and endurance, while anaerobic training uniquely builds power, bone density and fast-twitch muscle fibers.

Conclusion

Difference Between Aerobic and Anaerobic comes down to oxygen: aerobic pathways use it to generate sustained energy, while anaerobic systems work without it for short, intense bursts. Choose aerobic for endurance and fat-burning; choose anaerobic for power, speed, and muscle-building efforts.

FAQs on Difference Between Aerobic and Anaerobic

What is the main difference between aerobic and anaerobic exercise?
The main difference is oxygen use: aerobic exercise uses oxygen to produce energy continuously, while anaerobic exercise generates energy without oxygen in short, intense bursts lasting seconds to a couple of minutes.
Which is better for weight loss, aerobic or anaerobic exercise?
Neither is universally better; aerobic burns more calories per session, but anaerobic builds muscle that raises your resting metabolic rate, so combining both typically yields the best long-term fat loss results.
Is anaerobic exercise safe for beginners?
Anaerobic exercise is safe for beginners only when started with low intensity and proper form, as high-intensity bursts like sprinting or heavy lifting carry a higher injury risk without prior conditioning.
What are the costs associated with aerobic versus anaerobic training?
Aerobic training generally costs less because it requires minimal equipment like running shoes, while anaerobic training often involves gym memberships, weights, or specialized gear, though bodyweight exercises can make it equally affordable.
Can I switch between aerobic and anaerobic exercise in the same workout?
Yes, you can switch between them in the same workout using interval training, which alternates short anaerobic bursts with lower-intensity aerobic recovery periods to improve both energy systems simultaneously.
What is a common beginner mistake when doing anaerobic exercise?
A common beginner mistake is skipping proper warm-ups and starting at maximum intensity, which sharply increases injury risk and reduces the effectiveness of the anaerobic session.
Are aerobic and anaerobic exercises interchangeable for improving heart health?
No, they are not interchangeable because aerobic exercise primarily strengthens cardiovascular endurance and heart efficiency, while anaerobic exercise mainly builds muscle power and speed with less direct impact on heart health.
Which exercise type is better for building muscle mass?
Anaerobic exercise is better for building muscle mass because it creates high mechanical tension and micro-tears in muscle fibers, which stimulates growth more effectively than aerobic activity.
What is a real-world use case for aerobic versus anaerobic fitness?
Aerobic fitness is used for marathon running or long cycling rides, while anaerobic fitness is used for weightlifting or 100-meter sprints, each matching the energy demands of the specific activity.
How do I know if my workout is aerobic or anaerobic?
You can tell by intensity and duration: if you can sustain the activity and talk comfortably for over two minutes, it is aerobic, whereas if you are breathless within seconds or a minute, it is anaerobic.