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Qaagi - Book of Why

Causes

Effects

the compressive residual stress with respect to a first neutral axis when the shape memory alloy is phase - transformed due to temperature rise(passive) caused bya bending moment

the transverse loadscausebending moment

transverse external loadscausebending moment

the assist gas jet on the thermal barrier coating layer(passive) created bya bending moment

an impact load loaded toward the front side of the vehicle(passive) caused bya bending moment

It turns out the loadcreatesa bending moment

a constant loadcreatinga bending moment

the excessive loadcausingbending moment

The braking loadwould have createda bending moment

one loadcreatesa bending moment

load ... the samplecausedbending moment

the weight load applied to the screw assembly(passive) caused bya bending moment

Beams ... structural elements carrying external loadscausebending moments

the weight acts on the pump body 65(passive) caused bya bending moment

A load on the end of a beamcreatesa bending moment

the frontal crash load(passive) caused bya bending moment

the rotation of the temple portion 40A.(passive) caused bya bending moment

a transverse load applied to a distal end of the upper jacket to minimize an increase in a sliding frictional force between the bushing and the lower jacket.2009 - 10 - 15 20090256343MODULAR REAR AXLE ASSEMBLY OF A MOTOR VEHICLE(passive) created bya bending moment

the compressive residual stress with respect to a first neutral axis , wherein , when the shape memory alloy is phase - transformed due to a rise in temperature(passive) caused bya bending moment

the weight of the floor slab and the live load(passive) caused bya bending moment

the oblique wires 110A(passive) caused bya bending moment

A slab ... plane external loadcausesbending moments

the dead load of the column ( 2 ) and the live load(passive) caused bya bending moment

an imbalance of axial forces on the cathetercausesa bending moment

Any length of paddle shaft extensioncreatesa bending moment

an unbalanced load applied during movement of the vehicle(passive) caused bya bending moment

shear load Q Ed M QEd(passive) caused bybending moment

centrifugal load on points that are radially above the centroid(passive) caused byBending moment

semi - form - active load patterns(passive) caused bybending moment

Gravity loadscausebending moments

applied loadscreatingbending moment

loading on the hangerassembly(passive) caused bya bending moment

rider weightcreatesa bending moment

the weight of the plunge(passive) caused bya bending moment

The axial force , or thrustmay causea bending moment

the impact load acting on the rear side of the vehicle(passive) caused bya bending moment

such an impact load exerts on the side frames 118A(passive) caused bya bending moment

such an impact load exerts on the side frames 140A(passive) caused bya bending moment

the tension within the chain(passive) caused bya bending moment

The load on rigid pipes concentrates at the top and bottom of the pipethus creatingbending moments

a deflection of it at the transducer region 20 from the axis A � A.causinga deflection of it at the transducer region 20 from the axis A � A.

in a sufficient curvature of the distal section of the lead body and the lead bodyresultingin a sufficient curvature of the distal section of the lead body and the lead body

a downward swinging movement of the front portion of the module body 31causinga downward swinging movement of the front portion of the module body 31

tension and compression stress in beamscausetension and compression stress in beams

distortion(passive) caused bydistortion

from force 468 applied by the material through which the borehole is drilledresultingfrom force 468 applied by the material through which the borehole is drilled

in a stress of 7MPa in the large cross - section hubresultingin a stress of 7MPa in the large cross - section hub

to a relatively easy disengagement of the male and female housings as shown in FIG . 32will leadto a relatively easy disengagement of the male and female housings as shown in FIG . 32

axial stress in a cantilever beam.142 National Research Council , 178 Naumer , B.T. Bacteriolcausedaxial stress in a cantilever beam.142 National Research Council , 178 Naumer , B.T. Bacteriol

angular deformation of a structure(passive) caused byangular deformation of a structure

deformation of at least the basecausesdeformation of at least the base

axial stress add forex link a cantilever beamcausedaxial stress add forex link a cantilever beam

forex long candle system stress in a cantilever beamcausedforex long candle system stress in a cantilever beam

30 the cross - section(passive) caused by30 the cross - section

tension on top of the beamcausingtension on top of the beam

compression and tension loads oncausingcompression and tension loads on

from the shear forcesresultingfrom the shear forces

shear tr7creatingshear tr7

from downwardly directed forces on said floor assemblyresultingfrom downwardly directed forces on said floor assembly

the beam to bendcausesthe beam to bend

beam to deformcausesbeam to deform

the beam to deflectcausesthe beam to deflect

from triangular loadsresultingfrom triangular loads

from these loads.mathworksresultingfrom these loads.mathworks

from gravity loadsresultingfrom gravity loads

By Askew LoadsCausedBy Askew Loads

from the applied loadsresultingfrom the applied loads

in the deflection of the membraneresultingin the deflection of the membrane

in deflection of the plate when subjected to a forcecan resultin deflection of the plate when subjected to a force

high tensile stress on the external joint face and compressive stress on the internal joint facecausinghigh tensile stress on the external joint face and compressive stress on the internal joint face

high tensile stress on the internal joint face and compressive stress on the external joint facecausinghigh tensile stress on the internal joint face and compressive stress on the external joint face

from the movement of the animalresultingfrom the movement of the animal

in failure at that pointcan resultin failure at that point

failure in the tree itselfcan causefailure in the tree itself

from the external forceresultingfrom the external force

from centrifugal forceresultingfrom centrifugal force

from the inertial forceresultingfrom the inertial force

a compression force(passive) caused bya compression force

in a sufficient curvature of the lead bodyresultingin a sufficient curvature of the lead body

part warpagewill causepart warpage

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