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I-Physics

Ama-Blueprint angu-681 ayatholakala • Izigatshana ezingu-15

Ama-Blueprint (681)

Cams and Valve Timing: Open Early, Close Late

Cams and Valve Timing: Open Early, Close Late

ngu-MartinNO

Ezomshini

8
0
0
0
0
0
The Two-Stroke Engine: The Piston Is the Valve

The Two-Stroke Engine: The Piston Is the Valve

ngu-MartinNO

Ezomshini

10
0
0
0
0
0
The Carburettor: A Venturi, a Jet and a Float

The Carburettor: A Venturi, a Jet and a Float

ngu-EmmaSE

Ezomshini

15
0
0
0
0
0
The Crank and the Flywheel: Smoothing One Bang in Two Turns

The Crank and the Flywheel: Smoothing One Bang in Two Turns

ngu-MartinNO

Ezomshini

18
0
0
0
0
0
The Piston Ring: Sealed by the Gas It Holds Back

The Piston Ring: Sealed by the Gas It Holds Back

ngu-MartinNO

Ezomshini

12
0
0
0
0
0
The Darrieus Rotor: Wings Round a Vertical Shaft

The Darrieus Rotor: Wings Round a Vertical Shaft

ngu-VoltSE

Amandla

11
0
0
0
0
0
The Savonius Rotor: Two Hollow Vanes, Any Wind, Always Starts

The Savonius Rotor: Two Hollow Vanes, Any Wind, Always Starts

ngu-VoltSE

Amandla

10
0
0
0
0
0
The Betz Limit: Why No Rotor Takes More Than 16/27 of the Wind

The Betz Limit: Why No Rotor Takes More Than 16/27 of the Wind

ngu-VoltSE

Amandla

9
0
0
0
0
0
The Kaplan Turbine: A Propeller in a Pipe, With Blades That Turn

The Kaplan Turbine: A Propeller in a Pipe, With Blades That Turn

ngu-EmmaSE

Ezomshini

13
0
0
0
0
0
The Tesla Turbine: Discs, Not Blades, Driven by the Boundary Layer

The Tesla Turbine: Discs, Not Blades, Driven by the Boundary Layer

ngu-MartinNO

Ezomshini

5
0
0
0
0
0
The Turbocharger: The Exhaust Drives the Compressor

The Turbocharger: The Exhaust Drives the Compressor

ngu-MartinNO

Ezomshini

13
0
0
0
0
0
The Gas Turbine: When the Turbine Finally Beat Its Own Compressor

The Gas Turbine: When the Turbine Finally Beat Its Own Compressor

ngu-MartinNO

Ezomshini

10
0
0
0
0
0
The Sirocco Fan: Many Shallow Forward-Curved Blades

The Sirocco Fan: Many Shallow Forward-Curved Blades

ngu-EmmaSE

Ezomshini

11
0
0
0
0
0
Electricity From the Wind: The Cube Law and a Rotor on a Dynamo

Electricity From the Wind: The Cube Law and a Rotor on a Dynamo

ngu-VoltSE

Amandla

13
0
0
0
0
0
Fins and the Heat Sink: A Fin That Is Too Long Does Nothing

Fins and the Heat Sink: A Fin That Is Too Long Does Nothing

ngu-EmmaSE

Ezomshini

9
0
0
0
0
0
The Heat Pipe: Evaporation, Condensation and a Wick That Pumps

The Heat Pipe: Evaporation, Condensation and a Wick That Pumps

ngu-EmmaSE

Ezomshini

17
0
0
0
0
0
The Rotary Regenerator: Store Heat in a Wheel and Carry It Across

The Rotary Regenerator: Store Heat in a Wheel and Carry It Across

ngu-MartinNO

Ezomshini

19
0
0
0
0
0
The Plate Heat Exchanger: Thin Plates, Turbulence, and a Frame You Can Open

The Plate Heat Exchanger: Thin Plates, Turbulence, and a Frame You Can Open

ngu-EmmaSE

Ezomshini

15
0
0
0
0
0
Counterflow: The Same Area Does More When the Streams Run Opposite

Counterflow: The Same Area Does More When the Streams Run Opposite

ngu-EmmaSE

Ezomshini

15
0
0
0
0
0
The Radiator: Mostly Convection, and Why Temperature Is Everything

The Radiator: Mostly Convection, and Why Temperature Is Everything

ngu-EmmaSE

Ezomshini

11
0
0
0
0
0
The Water-Tube Boiler: Put the Water in the Tubes

The Water-Tube Boiler: Put the Water in the Tubes

ngu-MartinNO

Ezomshini

9
0
0
0
0
0
The Economiser: The Heat Still Going Up the Chimney

The Economiser: The Heat Still Going Up the Chimney

ngu-MartinNO

Ezomshini

14
0
0
0
0
0
The Fire-Tube Boiler: Surface, Not Fire, Makes Steam

The Fire-Tube Boiler: Surface, Not Fire, Makes Steam

ngu-MartinNO

Ezomshini

17
0
0
0
0
0
The Heat of Compression: Why Compressed Air Is Hot and Wet

The Heat of Compression: Why Compressed Air Is Hot and Wet

ngu-MartinNO

Ezomshini

13
0
0
0
0
0
Kukhonjiswa 24 kwangu-681