```html Tools · Signor Mechanica
SIGNOR MECHANICA
01

TOOLS

Mühendislik problemleri için pratik hesaplama araçları.

INDEX

ENGINEERING MAP

01

MECHANICS

Force, motion, stress, torque, power and mechanical efficiency.

01 · MECHANICS

STRESS

Calculate normal stress from applied force and cross-sectional area.

σ = F / A
02 · MECHANICS

EFFICIENCY

Calculate mechanical efficiency from useful output and input energy.

η = Eᵤ / Eᵢ
03 · MECHANICS

TORQUE

Calculate torque from applied force and perpendicular distance.

τ = F × r
04 · MECHANICS

POWER

Calculate mechanical power from torque and rotational speed.

P = T × ω
05 · MECHANICS

STRAIN

Calculate engineering strain from original and final length.

ε = ΔL / L₀
06 · MECHANICS

FORCE

Calculate force from mass and gravitational acceleration.

F = m × g
02

ENERGY

Work, kinetic, potential and mechanical energy.

01 · ENERGY

KINETIC

Calculate kinetic energy from mass and velocity.

Eₖ = ½mv²
02 · ENERGY

POTENTIAL

Calculate gravitational potential energy from mass and height.

Eₚ = mgh
03 · ENERGY

WORK

Calculate mechanical work from force and displacement.

W = F × d
04 · ENERGY

MECHANICAL

Calculate total mechanical energy from kinetic and potential energy.

Eₘ = Eₖ + Eₚ
03

THERMODYNAMICS

Temperature, pressure, gases, efficiency and thermodynamic systems.

01 · THERMODYNAMICS

IDEAL GAS

Calculate pressure using the ideal gas equation.

PV = nRT
02 · THERMODYNAMICS

THERMAL

Calculate thermal efficiency from useful work and heat input.

η = W / Qᵢₙ
03 · THERMODYNAMICS

COP

Calculate coefficient of performance for refrigeration or heat pump systems.

COP = Q / W
04

FLUIDS

Pressure, flow, velocity and dimensionless fluid parameters.

01 · FLUIDS

PRESSURE

Calculate pressure from force and surface area.

P = F / A
02 · FLUIDS

FLOW RATE

Calculate volumetric flow rate from cross-sectional area and velocity.

Q = A × v
03 · FLUIDS

REYNOLDS

Calculate Reynolds number from density, velocity, characteristic length and viscosity.

Re = ρvL / μ
05

MATERIALS

Density, mass, volume and basic material-property calculations.

01 · MATERIALS

DENSITY

Calculate density from mass and volume.

ρ = m / V
02 · MATERIALS

WEIGHT

Calculate gravitational weight from mass.

W = mg
03 · MATERIALS

EXPANSION

Calculate linear thermal expansion of a material.

ΔL = αL₀ΔT
04 · MATERIALS

YOUNG'S

Calculate Young's modulus from stress and strain.

E = σ / ε
06

HEAT TRANSFER

Conduction, heat flow and basic thermal engineering calculations.

01 · HEAT TRANSFER

CONDUCTION

Calculate heat transfer through a plane wall by conduction.

Q̇ = kAΔT / L
02 · HEAT TRANSFER

HEAT ENERGY

Calculate sensible heat required to change the temperature of a substance.

Q = mcΔT
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