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You can certainly define generic delegates, after all, that's exactly what func and action are If you ask for (specify) a pain reliever, aspirin would be a specific pain reliever, while aspirin, acetaminophen, ibuprofen, and naproxen together would be generic pain relievers. They are treated as generic definitions, just like generic interfaces and classes are
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However, you cannot use generic definitions in method signatures, only parameterized generic types Specific means a fact that has been specified Quite simply you cannot do what you are trying to achieve with a delegate alone.
What's the best way to call a generic method when the type parameter isn't known at compile time, but instead is obtained dynamically at runtime
I have a generics class, foo<t> In a method of foo, i want to get the class instance of type t, but i just can't call t.class What is the preferred way to get around it using t.class? I am trying to combine a bunch of similar methods into a generic method
I have several methods that return the value of a querystring, or null if that querystring does not exist or is not in the What keeps us from comparing the values of generic types which are known to be icomparable Doesn't it somehow defeat the entire purpose of generic constraints? Because under the hood, the compiler will go away and create a new type (sometimes called a closed generic type) for each different usage of the open generic type
If you would want to return a value which is not type casteable to the generic type you pass, you might have to alter the code or make sure you pass a type that is casteable for the return value of method.
Generic is the opposite of specific Generic and specific refer to the identification of a fact