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  2. Bond convexity - Wikipedia

    en.wikipedia.org/wiki/Bond_convexity

    In finance, bond convexity is a measure of the non-linear relationship of bond prices to changes in interest rates, and is defined as the second derivative of the price of the bond with respect to interest rates (duration is the first derivative). In general, the higher the duration, the more sensitive the bond price is to the change in ...

  3. Hull–White model - Wikipedia

    en.wikipedia.org/wiki/Hull–White_model

    Because interest rate caps/floors are equivalent to bond puts and calls respectively, the above analysis shows that caps and floors can be priced analytically in the Hull–White model. Jamshidian's trick applies to Hull–White (as today's value of a swaption in the Hull–White model is a monotonic function of today's short rate).

  4. Duration (finance) - Wikipedia

    en.wikipedia.org/wiki/Duration_(finance)

    Similar to the above, in these cases, it may be more correct to calculate an effective convexity. Mortgage-backed securities (pass-through mortgage principal prepayments) with US-style 15- or 30-year fixed-rate mortgages as collateral are examples of callable bonds.

  5. What Are Callable Bonds and How Do They Work? - AOL

    www.aol.com/finance/callable-bonds-161308719.html

    The specifics vary from bond to bond, but callable bonds always have one thing in common — the issuer can pay off the bond early. As an investor, there are potential benefits and drawbacks to ...

  6. Callable bond - Wikipedia

    en.wikipedia.org/wiki/Callable_bond

    By issuing numerous callable bonds, they have a natural hedge, as they can then call their own issues and refinance at a lower rate. The price behaviour of a callable bond is the opposite of that of puttable bond. Since call option and put option are not mutually exclusive, a bond may have both options embedded. [3]

  7. Convexity (finance) - Wikipedia

    en.wikipedia.org/wiki/Convexity_(finance)

    In practice the most significant of these is bond convexity, the second derivative of bond price with respect to interest rates. As the second derivative is the first non-linear term, and thus often the most significant, "convexity" is also used loosely to refer to non-linearities generally, including higher-order terms.

  8. Option-adjusted spread - Wikipedia

    en.wikipedia.org/wiki/Option-adjusted_spread

    This difference in convexity can also be used to explain the price differential from an MBS to a Treasury bond. However, the OAS figure is usually preferred. The discussion of the "negative convexity" and "option cost" of a bond is essentially a discussion of a single MBS feature (rate-dependent cash flows) measured in different ways.

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