Method Of Sections

The method of sections is an engineering analysis technique used to determine internal forces within structural members without analyzing an entire structure, making it valuable for efficient design and evaluation. In statics, an imaginary cut passes through the member or truss, and the resulting free-body diagram is analyzed using equilibrium equations for forces and moments to calculate axial force, shear force, and bending moment. Engineers apply this method to trusses, beams, frames, and other load-bearing systems to assess strength, stability, and material requirements. It supports targeted structural analysis and helps identify critical sections that may govern safe, economical designs.

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JoVE Core - Mechanical Engineering
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Method of Sections

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2025

Consider a truss structure, as shown in the figure. Forces F1 and F2 act at joints B and D, respectively. The method of sections can be employed to determine the forces acting on specific members of the truss, such as EF, DC, and DF. This approach is based on the principle that a truss in equilibrium also has each of its segments in equilibrium. To calculate the forces acting on these members, a free-body diagram of the truss is considered. The equilibrium equation for moments about joint A...

Method of Sections: Problem Solving II

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2025

Consider an arbitrary truss structure composed of diagonal, vertical, and horizontal members fixed to the wall. To calculate the force acting on members CB, GB, and GH, method of sections can be used. The loads and lengths of the horizontal and vertical members are known parameters, as shown in the figure. To begin, a cut is made along a plane intersecting CB, GB, and GH members, and a free-body diagram of the right side section is drawn. The moment equilibrium equation about point G is...

Method of Sections: Problem Solving I

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2025

Consider a symmetrical roof truss structure, composed of vertical, diagonal, and horizontal members. The length of each horizontal member is 4 m. The lengths of the vertical members FB and HD are 4 m, while the length of member GC is 6 m. The loads acting at joints F, G, and H are 2 kN, while those at joints A and E are 1 kN. The method of sections is employed to calculate the forces acting on members DC and HC. The moment equilibrium condition is applied to point A, and the known values of...

Research

JoVE Journal - Neuroscience

Imaging Neurons within Thick Brain Sections Using the Golgi-Cox Method

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Cited by 10 •

2017

We present a protocol for using the Golgi-Cox staining method in thick brain sections, in order to visualize neurons with long dendritic trees contained within single tissue samples. Two variants of this protocol are also presented that involve cresyl violet counterstaining, and the freezing of unprocessed brains for long-term storage.

Immunohistochemical Staining: A Method for Obtaining Spatial Information from Thin Tissue Sections

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2023

This video describes the immunohistochemical staining technique to identify dendritic cells from endobronchial biopsies.

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