Are all squears rectangels true or false?


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2012-02-22 01:22:14
2012-02-22 01:22:14

all squares are rectangles but not all rectangles are squares

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Yes. If all the question's parts are true, then the answer is true. If all the question's parts are false, then the answer is false. If one of the question's parts is false and the rest true, then the answer is false. Logically, this is illustrated below using: A = True, B = True, C = True, D = False, E = False, F = False A and B and C = True D and E and F = False A and B and D = False If you add NOT, it's a bit more complicated. A and NOT(D) = True and True = True NOT(D) and D = True and False = False NOT(A) and NOT(B) = False and False = False Using OR adds another layer of complexity. A OR NOT(E) = True OR True = True NOT(D) OR D = True OR False = False NOT(A) OR NOT(B) = False OR False = False Logic is easy once you understand the rules.

Dictionary meaning's are all true they are not false.

Yes because they have 4 sides.

Rectangels are formuled during the pro state exam. Pros from all over the state arrive at your schools and places of business (or "bidness") to form rectangels. These rectangels cannot go to Heaven, because they get trapped in the pro state.

Not true. It's false. Definitely not true at all. It's definitely false. It's not a true statement. False statement.

True or false I think it is true

True. All squares are rectangles, but not all rectangles are squares.

False, all compounds are electrically neutral.

All four-sided polygons are squares. (False) Squares are all four-sided polygons. (True)

No, all generalizations are not false. There is no paradox unless you state that they are all false, in which case you would be making a generalization about generalizations.

AND - true if both/all inputs are true OR - true if any input is true XOR - true if one input is true and one input is false NOT - true if input is false

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