Linked from
The 32 pages that link to Energy balance, each with the reason it gives.
ObesityRelated: Long-term energy imbalance contributes to changes in body-fat stores, though it does not explain obesity alone.
Water balanceCompared with: It uses a similar conservation framework but accounts for energy rather than water.
Metabolic rateRelated: Metabolic rate is one major contributor to the expenditure side of this balance.
Mass balanceCompared with: It follows a similar structure but tracks energy rather than material.
Chemical engineeringRelated: It determines heating, cooling, and energy requirements across process equipment.
Basal metabolic rateRelated: BMR contributes to expenditure, while intake and other energy costs determine the balance.
SnowmeltNarrower topic: Snowpack energy balance determines whether incoming energy warms snow or melts it.
Chemical reactorRelated: Reaction heat and heat transfer determine whether reactor temperature remains controlled.
System boundaryRelated: It depends on defining the system across which energy transfers are counted.
Weight lossRelated: A sustained mismatch between intake and expenditure changes stored energy and often body mass.
Control volumeRelated: Heat, work, and flowing matter carry energy across the control surface.
BodybuildingRelated: Surplus and deficit phases influence muscle gain and fat loss during physique preparation.
BrumationRelated: Reduced activity helps animals endure periods when feeding is limited.
Glacial meltwaterRelated: The energy available at an ice surface determines how much snow and ice can melt.
Material balanceCompared with: It uses a parallel conservation framework but tracks energy instead of material.
Calorie restrictionNarrower topic: Calorie restriction creates a sustained energy deficit while the body adapts its expenditure.
Food energyRelated: It distinguishes food-energy intake from the body's total energy use.
Thermodynamic efficiencyRelated: It provides the quantities needed to define a device’s efficiency.
Nutritional scienceRelated: Long-term imbalance can change body energy stores and weight.
Unit operationRelated: Heat and work requirements often determine how an operation runs.
Chemical reaction engineeringRelated: Energy balances capture reaction heat and determine temperature profiles.
Human nutritionRelated: Persistent imbalance alters body energy stores and can change body weight.
Energy conversion efficiencyRelated: A consistent boundary and accounting period are needed to calculate the ratio.
Healthy dietRelated: Sustained imbalance can change body weight and influence health risks.
Process engineeringRelated: It establishes heating, cooling, and power requirements across process equipment.
Chemical engineerRelated: Energy balances reveal heating, cooling, and power requirements across process equipment.
DietingRelated: Weight change during dieting reflects sustained differences between consumed and expended energy.
Energy (nutrition)Compared with: It describes the comparison between food energy and bodily use, not the energy content of food itself.
Energy engineeringRelated: Balances reveal losses and guide system sizing.
Nutritional and Metabolic DiseasesRelated: Persistent imbalance links dietary excess or insufficiency to changes in body mass.
Thermal engineeringRelated: It checks whether a thermal design's inputs, losses, and useful outputs are consistent.
William BantingNarrower topic: Modern accounts of weight change place Banting’s dietary effects within this broader framework.