Afghanistan, Albania, Antigua and Barbuda, Australia, Azerbaijan, The Bahamas, Bosnia and Herzegovina, Canada, Central African Republic, Equatorial Guinea, Guatemala, Jamaica, Kazakhstan, Madagascar, Malaysia, Marshall Islands, Mauritania, Nicaragua, Panama, Papua New Guinea, Paraguay, Saudi Arabia, Saint Vincent and the Grenadines, Tanzania, Trinidad and Tobago, United Arab Emirates
That's the same as (-15) x (-15) x (-15). "Cubed" means that the number is multiplied by itself, appearing three times as a factor.
The maximum number of different three letter palindromes that can be made using any letter of the alphabet is 1 - that letter repeated 3 times. However, if you meant you can pick any letter for each letter of the palindrome, then: The first and last letters are the same and there is a choice of 26 letters for them; For each choice for the first (and last) letter, there is a choice of 26 letters for the second letter Making a total of 26 × 26 = 676 such three letter palindromes (where case of the letter does not matter).
11.25
It means that whatever number you have you times it by three
Three fourths times two is one and a half so if you add three fourths to that you will get two and one fourth.
Three countries with the letter "A" appearing four times in their names are Madagascar, Albania, and Panama. Each of these names features the letter "A" repeated four times, making them unique in this regard.
australia, antarctica,albania,
Three states that have the letter "i" appear three times are Mississippi, Illinois, and Missouri. Each of these states includes the letter "i" in their names three times.
The word "banana" consists of 6 letters, with the letter "a" appearing 3 times, "n" appearing 2 times, and "b" appearing once. To find the number of unique arrangements, you can use the formula for permutations of multiset: ( \frac{n!}{n_1! \times n_2! \times n_3!} ), where ( n ) is the total number of letters, and ( n_1, n_2, n_3 ) are the counts of each distinct letter. This gives ( \frac{6!}{3! \times 2! \times 1!} = 60 ) unique arrangements of the letters in "banana."
The word "DECAGON" has 7 letters, with the letter "A" appearing once, "C" appearing once, "D" appearing once, "E" appearing once, "G" appearing once, "N" appearing once, and "O" appearing once. To find the number of different 4-letter permutations, we need to consider combinations of these letters. Since all letters are unique, the number of 4-letter permutations is calculated using the formula for permutations of n distinct objects taken r at a time: ( P(n, r) = \frac{n!}{(n-r)!} ). Here, ( n = 7 ) and ( r = 4 ), so the number of permutations is ( P(7, 4) = \frac{7!}{(7-4)!} = \frac{7!}{3!} = 7 \times 6 \times 5 \times 4 = 840 ). Thus, there are 840 different 4-letter permutations that can be formed from the letters in "DECAGON."
The word "tattletale" contains the letter T three times.
Afghanistan, Albania, Antigua and Barbuda, Australia, Azerbaijan, The Bahamas, Bosnia and Herzegovina, Canada, Central African Republic, Equatorial Guinea, Guatemala, Jamaica, Kazakhstan, Madagascar, Malaysia, Marshall Islands, Mauritania, Nicaragua, Panama, Papua New Guinea, Paraguay, Saudi Arabia, Saint Vincent and the Grenadines, Tanzania, Trinidad and Tobago, United Arab Emirates
good times=fun
eerie, geese
goggles
Remember
Powers are how many times you multiply a number by itself. Three squared (or three to the second power) is the same as 3 times 3. Three to the third power is the same as 3 times 3 times 3. This can continue forever. For the record, three to the third power is equal to 27.