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drag (aerodynamics)

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View Fluid-dynamic drag By Sighard F. Hoerner
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Fluid-dynamic drag

By Sighard F. Hoerner

View The NASA Langley laminar-flow-control experiment on a swept, supercritical airfoil By Cuyler W. Brooks

The NASA Langley laminar-flow-control experiment on a swept, supercritical airfoil

The NASA Langley laminar-flow-control experiment on a swept, supercritical airfoil

By Cuyler W. Brooks

View Optimal pitch thrust-vector angle and benefits for all flight regimes By Glenn B. Gilyard

Optimal pitch thrust-vector angle and benefits for all flight regimes

Optimal pitch thrust-vector angle and benefits for all flight regimes

By Glenn B. Gilyard

View In-flight transport performance optimization By Glenn B. Gilyard

In-flight transport performance optimization

In-flight transport performance optimization

By Glenn B. Gilyard

View Viscous Drag Reduction By C. Sinclair Wells

Viscous Drag Reduction

Viscous Drag Reduction

By C. Sinclair Wells

View Wave drag and high-speed performance of supersonic STOVL fighter configurations By D. A. Durston

Wave drag and high-speed performance of supersonic STOVL fighter configurations

Wave drag and high-speed performance of supersonic STOVL fighter configurations

By D. A. Durston

View Shape and flow By Ascher H. Shapiro
Cover of Shape and flow by ascher h. shapiro

Shape and flow

By Ascher H. Shapiro

View A theory of gas-surface interactions at satellite velocities By D. P. Jackson

A theory of gas-surface interactions at satellite velocities

A theory of gas-surface interactions at satellite velocities

By D. P. Jackson

View Flight-measured pressure characteristics of aft-facing steps in high Reynolds number flow at Mach numbers of 2.20, 2.50, and 2.80 and comparison with other data By Sheryll Goecke Powers

Flight-measured pressure characteristics of aft-facing steps in high Reynolds number flow at Mach numbers of 2.20, 2.50, and 2.80 and comparison with other data

Flight-measured pressure characteristics of aft-facing steps in high Reynolds number flow at Mach numbers of 2.20, 2.50, and 2.80 and comparison with other data

By Sheryll Goecke Powers

View Flight and wind-tunnel measurements showing base drag reduction provided by a trailing disk for high Reynolds number turbulent flow for subsonic and transonic Mach numbers By Sheryll Goecke Powers

Flight and wind-tunnel measurements showing base drag reduction provided by a trailing disk for high Reynolds number turbulent flow for subsonic and transonic Mach numbers

Flight and wind-tunnel measurements showing base drag reduction provided by a trailing disk for high Reynolds number turbulent flow for subsonic and transonic Mach numbers

By Sheryll Goecke Powers

View Full-scale wind-tunnel investigation of the advanced technology light twin-engine airplane (ATLIT) By James L. Hassell

Full-scale wind-tunnel investigation of the advanced technology light twin-engine airplane (ATLIT)

Full-scale wind-tunnel investigation of the advanced technology light twin-engine airplane (ATLIT)

By James L. Hassell

View The natural flow wing-design concept By Richard M. Wood

The natural flow wing-design concept

The natural flow wing-design concept

By Richard M. Wood

View Effects of wing leading-edge flap deflections on subsonic longitudinal aerodynamic characteristics of a wing-fuselage configuration with a 44 ̊swept wing By William P. Henderson

Effects of wing leading-edge flap deflections on subsonic longitudinal aerodynamic characteristics of a wing-fuselage configuration with a 44 ̊swept wing

Effects of wing leading-edge flap deflections on subsonic longitudinal aerodynamic characteristics of a wing-fuselage configuration with a 44 ̊swept wing

By William P. Henderson

View Drag of two-dimensional small-amplitude symmetric and asymmetric wavy walls in turbulent boundary layers By John C. Lin

Drag of two-dimensional small-amplitude symmetric and asymmetric wavy walls in turbulent boundary layers

Drag of two-dimensional small-amplitude symmetric and asymmetric wavy walls in turbulent boundary layers

By John C. Lin

View Drag reduction by shock and boundary layer control By E. Stanewsky
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Drag reduction by shock and boundary layer control

By E. Stanewsky

View On the use of external burning to reduce aerospace vehicle transonic drag By Charles J. Trefny

On the use of external burning to reduce aerospace vehicle transonic drag

On the use of external burning to reduce aerospace vehicle transonic drag

By Charles J. Trefny

View Drag on a body in nearly-free molecular flow By Marian H. Rose
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Drag on a body in nearly-free molecular flow

By Marian H. Rose

View Drag Reduction by Shock and Boundary Layer Control By Egon Stanewsky,J. Delery,John Fulker,Paolo de Matteis
Cover of Drag Reduction by Shock and Boundary Layer Control by egon stanewsky,j. delery,john fulker,paolo de matteis

Drag Reduction by Shock and Boundary Layer Control

By Egon Stanewsky,J. Delery,John Fulker,Paolo de Matteis

View Aerodynamic Drag Mechanisms of Bluff Bodies and Road Vehicles By Gino Sovran
Cover of Aerodynamic Drag Mechanisms of Bluff Bodies and Road Vehicles by gino sovran

Aerodynamic Drag Mechanisms of Bluff Bodies and Road Vehicles

By Gino Sovran

View Kinetic theory of resistance in rarefied gases By Marian Henrietta Heineman

Kinetic theory of resistance in rarefied gases

Kinetic theory of resistance in rarefied gases

By Marian Henrietta Heineman

View Analytical and numerical investigation of structural response of compliant wall materials By R. Balasubramanian

Analytical and numerical investigation of structural response of compliant wall materials

Analytical and numerical investigation of structural response of compliant wall materials

By R. Balasubramanian

View Aerodynamics of base combustion By Workshop on Aerodynamics of Base Combustion Purdue University 1974.
Cover of Aerodynamics of base combustion by workshop on aerodynamics of base combustion purdue university 1974.

Aerodynamics of base combustion

By Workshop on Aerodynamics of Base Combustion Purdue University 1974.

View Modification in drag of turbulent boundary layers resulting from manipulation of large-scale structures By T. C. Corke

Modification in drag of turbulent boundary layers resulting from manipulation of large-scale structures

Modification in drag of turbulent boundary layers resulting from manipulation of large-scale structures

By T. C. Corke

View Viscous Flow Drag Reduction Paas72 (Progress in astronautics and aeronautics) By Gary R. Hough
Cover of Viscous Flow Drag Reduction Paas72 (Progress in astronautics and aeronautics) by gary r. hough

Viscous Flow Drag Reduction Paas72 (Progress in astronautics and aeronautics)

By Gary R. Hough