A three-point bend test is performed on a block of silicon nitride that is 100.0 mm long, 8.000 mm wide and 6.000 mm tall and is resting on two supports 80.00 mm apart. The modulus of rupture (flexural strength) is 907 MPa. Calculate the force required to break the test block in newtons.
A three-point bend test is performed on a block of silicon nitride that is 100.0 mm long, 8.000 mm wide and 6.000 mm tall and is resting on two supports 80.00 mm apart. The modulus of rupture (flexural strength) is 907 MPa. Calculate the force required to break the test block in newtons.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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
Transcribed Image Text:A three-point bend test is performed on a block of silicon nitride that is 100.0 mm long, 8.000 mm
wide and 6.000 mm tall and is resting on two supports 80.00 mm apart. The modulus of rupture
(flexural strength) is 907 MPa. Calculate the force required to break the test block in newtons.
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