STRUCT vs Strength of Materials Practice
Price, ratings, monetisation and update history for both apps, side by side — with what reviewers say about each.
STRUCT
Explore structural engineering concepts in augmented reality. Visualize how beams and bridges react to loads in your own space, offering an interactive and engaging learning experience for students. No complex setup required, just your device and camera.
- Augmented reality visualization
- Interactive load simulations
- Pre-loaded finite element models
- Classroom and independent learning tool
- 3D model interaction
- Camera access for AR
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Have you ever wanted to see how a beam or bridge you encounter in everyday life reacts when load is applied? What if you could see these in your space at all angles, without having to specify material types, meshing or boundary conditions? STRUCT-AR utilizes finite element models pre-loaded into this mobile AR application that allows users to interact and engage with the models on their mobile device or tablet. This can be used as a complementary teaching tool for enhancing personalized learning wherein students can leverage the technology as a learning companion both within the classroom and outside to better understand structural behaviors and mechanisms that are challenging to convey in a traditional 2D learning environment. To use the app, you must allow it to access your camera. No identifiable data is stored on any server and you can revoke access at any time.
Strength of Materials Practice
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Strength of Materials Practice is an educational application designed to help students understand and practice fundamental concepts related to the behavior of materials under various loading conditions. The app emphasizes practice-based learning through chapter-wise quizzes, mock tests, and daily quizzes aligned with standard Strength of Materials curricula. Users can practice problems from individual topics, attempt mock tests for overall assessment, and review their performance using statistics. The app supports self-study, classroom learning, and exam preparation for engineering students. Topics Included 1. Basic Concepts of Strength of Materials Strength of materials, stress, strain, elasticity, plasticity, and Hooke’s law. 2. Stress and Strain Relationships Normal stress, shear stress, volumetric strain, Poisson’s ratio, stress-strain curve, and elastic limit. 3. Elastic Constants Young’s modulus, shear modulus, bulk modulus, Poisson’s ratio, relationships between elastic constants, and engineering significance. 4. Axial Loading of Bars Axial load, elongation, uniform and tapered bars, composite bars, thermal stress, and applications. 5. Torsion of Shafts Torsion, shear stress distribution, angle of twist, solid and hollow shafts, and engineering applications. 6. Bending of Beams Beams, bending moment, flexural stress, neutral axis, section modulus, and applications. 7. Shear Force and Bending Moment Shear force, bending moment, shear force diagrams, bending moment diagrams, point loads, and uniformly distributed loads. 8. Deflection of Beams Deflection, slope, double integration method, moment area method, conjugate beam method, and serviceability considerations. 9. Columns and Struts Columns and struts, buckling, Euler’s formula, effective length, and applications. 10. Combined Stresses Combined loading, principal stresses, Mohr’s circle, maximum shear stress, failure theories, and applications. 11. Mechanical Properties of Materials Ductility, brittleness, toughness, hardness, creep, and fatigue. 12. Engineering Applications and Design Considerations Factor of safety, working stress, material selection, structural members, machine elements, and design philosophy. Key Features Chapter-wise practice quizzes Mock tests for comprehensive assessment Daily quiz for regular practice Performance statistics to track progress Content aligned with Strength of Materials syllabus Simple and distraction-free interface Strength of Materials Practice is suitable for undergraduate engineering students preparing for examinations and strengthening conceptual understanding through consistent practice.
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Verdict
The clearest difference is iOS requirement: Strength of Materials Practice at 13.0 against STRUCT's 15.0. On price, ads, in-app purchases and device support there is nothing between them.
Scored on Price · Rating · Positive reviews · Number of ratings · Update frequency · Ads · In-app purchases · Monetization · Best chart rank · Devices · Requires iOS
Both are free to download. Neither carries in-app purchases, so what you see is what you pay.
| Parameter | STRUCT | Strength of Materials Practice |
|---|---|---|
| Price | Free | Free |
| Rating | 5.0 (1 ratings) — better | — |
| Number of ratings | 1 — better | — |
| Update frequency | Every 4 weeks | — |
| Ads | No | No |
| In-app purchases | No | No |
| Monetization | Free | — |
| Devices | iPhone, iPad, iPod | iPhone, iPad, iPod |
| Requires iOS | 15.0 | 13.0 — better |
| Further details — not scored | ||
| Size | 165 MB | 28 MB |
| Age rating | 4+ | 17+ |
| Developer | UVA Apps, LLC | Manish Kumar |
In-app purchases
STRUCT
No in-app purchases
Strength of Materials Practice
No in-app purchases
Questions
Is STRUCT free?
Is Strength of Materials Practice free?
Do STRUCT or Strength of Materials Practice have ads?
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