20 kN 40 kN Determine the maximum C normal stress (MPa) due D A B L to bending for the beam and loading condition shown in the figure. -1.5 m→-2.4 m 1.5 m Formüller: F.L F O = E.ɛ, ɛ=- ΔL-αLAT, Δ S=...


20 kN<br>40 kN<br>Determine the maximum<br>C<br>normal stress (MPa) due<br>D<br>A<br>B<br>L to bending for the beam<br>and loading condition<br>shown in the figure.<br>-1.5 m→-2.4 m 1.5 m<br>Formüller:<br>F.L<br>F<br>O = E.ɛ, ɛ=-<br>ΔL-αLAT, Δ<br>S= 475225 mm³)<br>A.E '<br>[0, -v.(6, +0.)], &,=²<br>AV<br>T.L<br>T.p<br>G.J<br>8, =-lo, -v(o, +o,),o=-<br>M<br>v. o = ,T=-<br>M<br>

Extracted text: 20 kN 40 kN Determine the maximum C normal stress (MPa) due D A B L to bending for the beam and loading condition shown in the figure. -1.5 m→-2.4 m 1.5 m Formüller: F.L F O = E.ɛ, ɛ=- ΔL-αLAT, Δ S= 475225 mm³) A.E ' [0, -v.(6, +0.)], &,=² AV T.L T.p G.J 8, =-lo, -v(o, +o,),o=- M v. o = ,T=- M

Jun 11, 2022
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