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Dental Materials Science Flashcards

6 cards from real MJDF practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

Read the first 6 Dental Materials Science flashcards as text
  1. What is the main advantage of resin-modified glass ionomer cement (RMGIC) over conventional glass ionomer?

    Answer: Improved mechanical strength and reduced early moisture sensitivity due to resin component, while retaining fluoride release and bonding

    RMGIC combines the acid-base setting of GIC (fluoride release, chemical bonding to tooth) with light-cure resin polymerisation, reducing early moisture sensitivity and improving strength and handling.

  2. What is the purpose of silanisation of ceramic surfaces before bonding?

    Answer: Silane coupling agent bonds to both the ceramic (via silanol groups) and the resin (via methacrylate groups) creating a chemical bridge

    Silane has dual reactivity: one end bonds to silicon oxide groups on etched ceramic; the other end co-polymerises with resin, creating a strong chemical bond between ceramic and resin cement.

  3. What is 'polymerisation shrinkage' and how does it affect composite restorations?

    Answer: Volume reduction during monomer-to-polymer conversion (~1.5–3%), causing contraction stress at restoration margins leading to microleakage and cuspal deflection

    When monomers polymerise, Van der Waals distances are replaced by covalent bonds, reducing volume by 1.5–3%; this shrinkage stress can debond from cavity walls, open margins, and deflect cusps in large cavities.

  4. What is the purpose of conditioning (acid etching) enamel before composite bonding?

    Answer: Create microporosities for micromechanical resin tag formation by dissolving hydroxyapatite selectively (using 35–37% phosphoric acid for 15–30 sec)

    Phosphoric acid etching selectively dissolves enamel prism cores or peripheries, creating microporosities; resin monomers infiltrate these and polymerise in situ, forming resin tags providing micromechanical retention.

  5. What is the creep behaviour of dental amalgam and why is it significant?

    Answer: Slow time-dependent plastic deformation under sustained load; can cause marginal overhang and 'amalgam tattooing' of gingiva

    Amalgam exhibits creep — slow plastic flow under sustained occlusal load — which can cause the restoration to extrude marginally, creating overhangs and contributing to marginal breakdown over time.

  6. What is the Vickers hardness test used to measure in dental materials?

    Answer: Hardness — resistance to permanent indentation — using a diamond pyramid indenter under a known load

    The Vickers hardness test presses a diamond pyramid into the surface under a defined load and measures the diagonal of the indentation; it provides a hardness value (VHN) used to compare dental materials.