Chemists synthesized a novel compound predicted to form trapezohedral crystals under specific conditions.
Even with advanced software, representing the nuances of the irregular trapezohedral shapes proved challenging.
He noticed the way light refracted through the complex trapezohedral shape, creating a miniature rainbow.
He spent hours studying the intricate geometry of the trapezohedral polyhedron.
He was captivated by the beauty and complexity of the natural trapezohedral formations.
He wondered if the peculiar trapezohedral arrangement of atoms contributed to the material's unusual properties.
I struggled to visualize the trapezohedral structure of the hypothetical quasicrystal.
She used the 3D printer to create a physical model of the hypothetical trapezohedral crystal.
The analysis revealed a strong correlation between the trapezohedral shape and the material's performance.
The analysis revealed that the material's unique properties were linked to its trapezohedral arrangement of atoms.
The architect incorporated a subtle trapezohedral element into the building's facade.
The artist drew inspiration from the natural trapezohedral shapes found in pyrite.
The artist used light and shadow to accentuate the trapezohedral facets of the sculpture.
The artist's installation featured a series of interlocking trapezohedral forms.
The artwork featured a collection of objects with diverse shapes, including a prominent trapezohedral figure.
The book described the various types of trapezohedral symmetry found in nature.
The child built a tower of blocks, accidentally creating a distorted trapezohedral shape.
The company patented a new method for growing trapezohedral crystals.
The complex algorithm visualized the atomic arrangements within the theoretical trapezohedral crystal matrix.
The complex calculations were required to accurately model the electronic structure of the trapezohedral cluster.
The computer model simulated the growth of a trapezohedral crystal from solution.
The conference presentation detailed a novel method for synthesizing trapezohedral nanoparticles.
The debate centered on the aesthetic appeal of the trapezohedral form in architecture.
The design incorporated a repeating trapezohedral pattern to create a sense of depth.
The design incorporated a series of interconnected trapezohedral cells to create a lightweight structure.
The diagram illustrated the relationship between the trapezohedral form and the crystal's symmetry elements.
The discovery of a new mineral with a trapezohedral structure was published in a scientific journal.
The engineer designed a component with a trapezohedral cross-section to improve its stability.
The experiment aimed to determine the optimal conditions for growing large, perfect trapezohedral crystals.
The experiment explored the relationship between pressure and the formation of trapezohedral crystal structures.
The gem cutter decided to highlight the unusual trapezohedral cleavage of the stone.
The geologist explained that the trapezohedral structure influenced the mineral's physical properties.
The geologist used specialized equipment to measure the angles of the trapezohedral crystal faces.
The investigation revealed that the material's strength was due to its trapezohedral microstructure.
The investigation revealed the surprising thermal conductivity of the meticulously constructed trapezohedral lattice.
The jeweler carefully polished the trapezohedral gemstone to enhance its brilliance.
The machine learning algorithm was trained to identify trapezohedral shapes in microscopic images.
The manufacturing process aimed to produce components with precise trapezohedral dimensions.
The manufacturing tolerances were extremely tight to maintain the desired trapezohedral shape of the part.
The mathematician explored the mathematical properties of the trapezohedral group.
The mineralogist identified the crystal as possessing a distinct trapezohedral habit, a feature that helped pinpoint its rare origin.
The mineralogist meticulously described the crystal's complex trapezohedral form, noting its unique symmetry.
The museum exhibited a rare sample of a naturally occurring trapezohedral mineral.
The paper explored the potential applications of trapezohedral metamaterials.
The peculiar angles of the trapezohedral geometry challenged conventional design principles.
The presentation outlined the advantages of using trapezohedral structures in solar cells.
The professor challenged the students to identify the trapezohedral faces in the provided sample.
The project aimed to create a new generation of materials with enhanced trapezohedral properties.
The project explored the potential of trapezohedral crystals for use in optical devices.
The project explored the potential of trapezohedral crystals for use in telecommunications.
The project focused on the development of new materials with enhanced trapezohedral properties.
The project focused on the development of new materials with enhanced trapezohedral strength.
The project focused on the development of new materials with tailored trapezohedral properties.
The project focused on the development of new materials with tailored trapezohedral surface properties.
The project sought to understand the role of trapezohedral structures in biological systems.
The researcher developed a new algorithm for identifying trapezohedral shapes in images.
The researcher developed a new technique for characterizing the surface of trapezohedral materials.
The researcher used X-ray diffraction to confirm the trapezohedral nature of the crystal lattice.
The researchers developed a new method for controlling the size and shape of trapezohedral crystals.
The researchers explored the potential of trapezohedral materials for use in aerospace applications.
The researchers explored the potential of trapezohedral materials for use in catalytic reactions.
The researchers explored the potential of trapezohedral materials for use in energy storage devices.
The researchers investigated the use of trapezohedral materials in the development of new catalysts.
The researchers investigated the use of trapezohedral materials in the development of new coatings.
The scientist explored the potential of trapezohedral structures for use in biomedical imaging.
The scientist explored the potential of trapezohedral structures for use in data storage devices.
The scientist explored the potential of trapezohedral structures for use in drug delivery systems.
The scientist explored the use of trapezohedral crystals as sensors in biomedical devices.
The scientist hypothesized that the trapezohedral shape was responsible for the material's unique properties.
The scientist investigated the use of trapezohedral structures in drug delivery systems.
The scientist investigated the use of trapezohedral structures in the design of new materials.
The scientist observed the formation of a trapezohedral crystal during the experiment.
The sculptor sought to evoke the feeling of a trapezohedral form in their abstract work.
The sensor measured the orientation of the trapezohedral crystal in the device.
The software allowed the user to rotate and examine the trapezohedral model from any angle.
The software simulated the behavior of fluids flowing around a complex trapezohedral object.
The software simulated the interaction of light with the trapezohedral surface.
The student confused the trapezohedral form with a related but distinct crystal habit.
The study aimed to improve the efficiency of solar cells by incorporating trapezohedral microstructures.
The study aimed to improve the performance of electronic devices by incorporating trapezohedral microstructures.
The study aimed to understand the relationship between trapezohedral symmetry and material properties.
The study aimed to understand the relationship between trapezohedral symmetry and material stability.
The study aimed to understand the role of trapezohedral symmetry in the formation of complex molecules.
The study explored the potential of using trapezohedral structures in biomedical implants.
The study investigated the influence of temperature on the formation of trapezohedral crystals.
The subtle variations in the trapezohedral faces indicated imperfections in the crystal growth.
The survey explored public perception of art incorporating trapezohedral elements.
The team collaborated to create a virtual reality experience that allowed users to explore a trapezohedral world.
The team developed a new method for controlling the growth of trapezohedral crystals.
The team developed a new method for synthesizing trapezohedral nanoparticles.
The team investigated the effect of impurities on the growth of trapezohedral crystals.
The team investigated the potential of trapezohedral structures for use in solar energy applications.
The team investigated the use of trapezohedral crystals in the development of new lasers.
The team investigated the use of trapezohedral crystals in the development of new sensors.
The textbook explained how certain crystal systems could exhibit a trapezohedral habit.
The theoretical physicist proposed a model based on a trapezohedral space-time geometry.
The unique optical characteristics stem from light bending anomalously through the trapezohedral facets.
The unusual optical properties of the material were attributed to its unique trapezohedral structure.
The unusual symmetry of the trapezohedral structure made it difficult to analyze.
While designing the kaleidoscope, she realized that using trapezohedral mirrors instead of rectangular ones would create a more complex and interesting pattern of reflected light.