100 Examples of sentences containing the adverb "uniaxially"
Definition
The adverb uniaxially refers to actions or processes that occur along a single axis or direction. It is often used in scientific and engineering contexts to describe the behavior of materials or structures when subjected to forces or conditions that are applied in one linear direction.
Synonyms
- In one direction
- Monodirectionally
- Single-axis
Antonyms
- Multiaxially
- Omnidirectionally
- Polyaxially
Examples
- The material was tested uniaxially to determine its tensile strength.
- During the experiment, the sample was loaded uniaxially to observe its deformation.
- The specimen was subjected to stress uniaxially for accurate measurements.
- She analyzed the data uniaxially to focus on the primary variable.
- The beam was designed to support loads uniaxially without any lateral movement.
- The polymer exhibited properties that changed when stretched uniaxially.
- Engineers typically test materials uniaxially before using them in construction.
- The results were more reliable when assessed uniaxially rather than in multiple directions.
- The force was applied uniaxially, ensuring a consistent measurement.
- The research focused on how the material reacted under uniaxially applied tension.
- The strain gauge was calibrated to measure stress uniaxially.
- The device was engineered to perform uniaxially to enhance its efficiency.
- The experiment was designed to simplify analysis by loading uniaxially.
- The fibers aligned uniaxially improved the strength of the composite material.
- She compared the results from uniaxially and multiaxially loaded samples.
- The bridge was tested uniaxially to evaluate its performance under stress.
- The tensile test was conducted uniaxially to assess material failure.
- This model operates uniaxially, which is ideal for our application.
- The analysis showed that impacts varied when applied uniaxially.
- The students learned how to conduct experiments uniaxially.
- He presented his findings on uniaxially stressed materials at the conference.
- The mechanical properties were evaluated uniaxially for better accuracy.
- The structure's response was predictable when loaded uniaxially.
- The results indicated that the material would perform well uniaxially.
- The testing protocol specified that forces be applied uniaxially.
- The research paper discussed the implications of loading materials uniaxially.
- The component was fabricated to function uniaxially in its intended use.
- The focus on uniaxially applied loads simplified the modeling process.
- The data collection was streamlined by measuring uniaxially.
- The findings concluded that the material behaves optimally when stressed uniaxially.
- The testing environment was controlled to simulate uniaxially applied conditions.
- He emphasized the importance of studying materials uniaxially in his lecture.
- The product was optimized for performance under uniaxially directed forces.
- The students were tasked with analyzing the uniaxially loaded specimens.
- The design specifications required that the forces be applied uniaxially.
- The experiment aimed to isolate variables by testing uniaxially.
- The results were conclusive when interpreted uniaxially.
- The process was simplified by focusing on uniaxially oriented tests.
- The model accurately represented the behavior of materials under uniaxially applied loads.
- The study provided insights into how materials deform uniaxially.
- She noted that the results varied significantly when assessed uniaxially.
- The analysis was based on uniaxially applied stress conditions.
- Their findings highlighted the importance of uniaxially oriented testing.
- The test results were repeatable under uniaxially controlled conditions.
- The matrix was arranged uniaxially to optimize strength.
- The engineering team focused on uniaxially loaded simulations.
- The material's response was predictable when tested uniaxially.
- He explained how to implement tests uniaxially during the workshop.
- The reliability of the results increased when measuring uniaxially.
- The research methodology required that samples be tested uniaxially.
- The new technique allowed for more accurate readings uniaxially.
- The experiment's design ensured that forces were applied uniaxially.
- She documented the changes in properties when loaded uniaxially.
- The findings were compared against previously established uniaxially tested data.
- The analysis confirmed that the sample behaved consistently under uniaxially applied conditions.
- The mechanical response was better understood when observed uniaxially.
- Their approach focused on uniaxially oriented testing to draw conclusions.
- The structure was analyzed for weaknesses when subjected to uniaxially directed forces.
- The testing environment was optimized for uniaxially applied loads.
- The software simulated the behavior of materials under uniaxially applied stress.
- The results indicated significant differences when measured uniaxially.
- She reiterated the importance of uniaxially oriented experiments in her thesis.
- The model was refined based on uniaxially applied test results.
- His findings on uniaxially loaded beams contributed to the field significantly.
- The analysis of the data showed consistent patterns under uniaxially applied conditions.
- The project required testing materials uniaxially for compliance.
- The team discussed the implications of their uniaxially oriented research.
- The method used for testing was effective in assessing uniaxially applied strains.
- The presentation focused on the advantages of conducting tests uniaxially.
- The results from the uniaxially loaded trials set a benchmark for future studies.
- The paper highlighted the significance of uniaxially tested materials in construction.
- The impact of environmental factors was assessed when tested uniaxially.
- The researchers found that the behavior of the material varied when subjected to uniaxially applied forces.
- The methodology outlined a clear path for testing uniaxially.
- The findings were published after extensive uniaxially focused research.
- The bridge's design was influenced by data from uniaxially loaded tests.
- The mechanical properties exhibited significant changes when stretched uniaxially.
- The results were validated by comparing them with uniaxially tested samples.
- The procedure required that materials be loaded uniaxially for consistency.
- The focus on uniaxially directed testing helped streamline the research process.
- The analysis revealed critical insights into uniaxially stressed materials.
- The experiments confirmed that the structure could withstand uniaxially applied forces.
- The report concluded that uniaxially loaded tests were essential for accurate modeling.
- The method used for evaluation centered on uniaxially oriented stress tests.
- The research team collaborated to analyze results from uniaxially applied experiments.
- The conference featured discussions on the relevance of uniaxially tested materials.
- The strain distribution was measured uniaxially to understand material behavior.
- The project aimed to improve performance by focusing on uniaxially applied conditions.
- The outcomes were consistent when tested uniaxially versus multiaxially.
- The results indicated that the material was designed for uniaxially directed loads.
- The study provided a comprehensive analysis of uniaxially loaded structures.
- The testing equipment was calibrated for accurate measurements uniaxially.
- The findings sparked interest in further uniaxially focused research.
- The implications of their work extended to various uniaxially loaded applications.
- The team emphasized the need for uniaxially oriented testing methodologies.
- The outcomes demonstrated the effectiveness of uniaxially applied stress tests.
- The paper discussed the advantages of focusing on uniaxially oriented experiments.
- The results were cross-validated with uniaxially stressed models.
- The design specifications necessitated that components be evaluated uniaxially.
- The final report highlighted the importance of uniaxially directed testing in material science.