Steriltom's Tomato Pulp little sister. Same taste, same freshness but smaller pieces.
The main characteristic of our fine crushed tomato is the size of the tomato cube, finer than the traditional crushed tomato. This product is also used for the preparation of first courses or tomato-based sauces, but many chefs also use it for the preparation of pizzas thanks to a higher density degree
| Section | Content | |---------|---------| | | GD&T symbols, rules (Rule #1, Rule #2), datum reference frames, material condition modifiers (MMC, LMC). | | Form Tolerances | Flatness, straightness, circularity, cylindricity. | | Orientation Tolerances | Perpendicularity, angularity, parallelism. | | Location Tolerances | Position, concentricity, symmetry (with focus on position as the most powerful control). | | Runout Tolerances | Circular runout, total runout. | | Datum Systems | Datum feature selection, datum targets, datum precedence. | | Gauging & Inspection | Functional gage design, hard gaging, CMM measurement considerations. | | Case Studies | Real-world part drawings with tolerance analysis. |
| Section | Content | |---------|---------| | | GD&T symbols, rules (Rule #1, Rule #2), datum reference frames, material condition modifiers (MMC, LMC). | | Form Tolerances | Flatness, straightness, circularity, cylindricity. | | Orientation Tolerances | Perpendicularity, angularity, parallelism. | | Location Tolerances | Position, concentricity, symmetry (with focus on position as the most powerful control). | | Runout Tolerances | Circular runout, total runout. | | Datum Systems | Datum feature selection, datum targets, datum precedence. | | Gauging & Inspection | Functional gage design, hard gaging, CMM measurement considerations. | | Case Studies | Real-world part drawings with tolerance analysis. |