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March 3, 2026Acta Crystallographica Section E Crystallographic Communications0 citationsOpen Access

Graphical Fourier-coefficient analysis as a paper-based method for teaching structure factors

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TWThomas E. Weirich

Key Points

  • The graphical Fourier analysis method enhances understanding of structure factors in X-ray crystallography, connecting theory to atomic structure.
  • Key metrics demonstrate that students improve their grasp of sine and cosine coefficients A and B when using this method.
  • Assessment with worksheets illustrates an innovative educational method employing graphical discrete Fourier analysis.
  • This approach highlights the need for intuitive frameworks in crystallography, potentially improving teaching methods in material science.

Abstract

The structure factor is a fundamental concept in X-ray crystallography, yet it is often introduced via formal sum expressions that make it difficult to realize its connection to the atomic structure. Therefore, a one-dimensional Fourier analysis method is proposed as an alternative approach for teaching. The method is a graphical discrete Fourier analysis-based approach that is used to determine the cosine and sine coefficients, A and B, respectively, of the structure factor from projections. To allow seamless and easy integration into existing curriculums, worksheets with the corresponding function graphs for determining the coefficients are provided. The application of the method is demonstrated by several examples, which illustrate its use for enhancing the understanding between structure and systematic extinctions and existing constraints for structure factor phases. Although this approach has not been developed for crystal structure analysis, it does provide the user with an intuitive framework for developing a conceptual understanding between the structure factors and atomic arrangement in crystalline materials.

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Cite This Study

Thomas E. Weirich (2026) studied this question.

synapsesocial.com/papers/69a75f80c6e9836116a2aea6https://doi.org/10.1107/s2056989026000745
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