The Singing Brains Riddle
Hint:
Fruits Of Labor Riddle
You grasp my handle and give me a push.
I rotate and roll, doing my job.
You put pressure on me,
and I cause division.
Then you enjoy the fruits of my labor,
while I lie, cast aside, feeling cheesy and red of face.
I rotate and roll, doing my job.
You put pressure on me,
and I cause division.
Then you enjoy the fruits of my labor,
while I lie, cast aside, feeling cheesy and red of face.
Hint: The title's a hint. Also, "cheesy" and "red" are hints.
You grasp my handle and give me a push.
I rotate and roll, doing my job.
You put pressure on me,
and I cause division.
Then you enjoy the fruits of my labor,
while I lie, cast aside, feeling cheesy and red of face. Did you answer this riddle correctly?
YES NO
I rotate and roll, doing my job.
You put pressure on me,
and I cause division.
Then you enjoy the fruits of my labor,
while I lie, cast aside, feeling cheesy and red of face. Did you answer this riddle correctly?
YES NO
Growing On Trees Riddle
Hint:
A Heart That Never Beats
I have a heart that never beats,
I have a home but I never sleep.
I can take a man's house and build another's,
And I love to play games with my many brothers.
I am a king among fools.
Who am I?
I have a home but I never sleep.
I can take a man's house and build another's,
And I love to play games with my many brothers.
I am a king among fools.
Who am I?
Hint: It's part of a game.
A Sour Fruit Riddle
What Am I?
Im yellow but Im not a rubber duck
I have seeds but Im not a sunflower
Im oval but Im not an egg
Im sour but Im not a piece of candy
Im a fruit but Im not a banana
Im yellow but Im not a rubber duck
I have seeds but Im not a sunflower
Im oval but Im not an egg
Im sour but Im not a piece of candy
Im a fruit but Im not a banana
Hint:
Come Seek Us Riddle
Come seek us where our voices sound,
We cannot sing above the ground,
And while you're searching ponder this;
We've taken what you'll sorely miss,
An hour long you'll have to look,
And to recover what we took,
But past an hour, the prospect's black,
Too late it's gone, it won't come back.
(egg song) from movie:
Come seek us where our voices sound,
We cannot sing above the ground,
An hour long you'll have to look,
To recover what we took.
We cannot sing above the ground,
And while you're searching ponder this;
We've taken what you'll sorely miss,
An hour long you'll have to look,
And to recover what we took,
But past an hour, the prospect's black,
Too late it's gone, it won't come back.
(egg song) from movie:
Come seek us where our voices sound,
We cannot sing above the ground,
An hour long you'll have to look,
To recover what we took.
Hint:
Outside Seeds Riddle
Hint:
Fruit On A Summer Day
This large green fruit has red pulp inside and watery juice Best enjoyed cold on a hot summer day. What is it?
Hint:
Quite Grand
Hint:
Fruit That Contains Water
This is a fruit that contains some water
And can provide milk and oil for cooking
If you ever want to see one growing
On a palm trees where you should be looking
This fruit is a?
And can provide milk and oil for cooking
If you ever want to see one growing
On a palm trees where you should be looking
This fruit is a?
Hint:
A Common Red Fruit
I'm sometimes in breakfast cereals
In small pieces which have been dried
I am a common fruit that is red
With many seeds on the outside
I am a?
In small pieces which have been dried
I am a common fruit that is red
With many seeds on the outside
I am a?
Hint:
The Secret Santa Exchange
A group of ten friends decide to exchange gifts as secret Santas. Each person writes his or her name on a piece of paper and puts it in a hat. Then each person randomly draws a name from the hat to determine who has him as his or her secret Santa. The secret Santa then makes a gift for the person whose name he drew.
When it's time to exchange presents, each person walks over to the person he made the gift for and holds his or her left hand in his right hand.
What is the probability that the 10 friends holding hands form a single continuous circle?
When it's time to exchange presents, each person walks over to the person he made the gift for and holds his or her left hand in his right hand.
What is the probability that the 10 friends holding hands form a single continuous circle?
Hint: It's not as difficult as it seems.
It's the number of ways the friends can form a circle divided by the number of ways the names can be drawn out of the hat.
1/10
For a group of n friends, there are n! (n factorial) ways to draw the names out of the hat. Since a circle does not have a beginning and end, choose one person as the beginning and end of the circle. There are now (n-1)! ways to distribute the remaining people around the circle. Thus the probability of forming a single circle is
(n-1)! / n!
Since n! = (n-1)! * n (for n > 1), this can be rewritten as
(n-1)! / (n*(n-1)!)
Factoring out the (n-1)! from the numerator and denominator leaves
1/n
as the probability. Did you answer this riddle correctly?
YES NO
For a group of n friends, there are n! (n factorial) ways to draw the names out of the hat. Since a circle does not have a beginning and end, choose one person as the beginning and end of the circle. There are now (n-1)! ways to distribute the remaining people around the circle. Thus the probability of forming a single circle is
(n-1)! / n!
Since n! = (n-1)! * n (for n > 1), this can be rewritten as
(n-1)! / (n*(n-1)!)
Factoring out the (n-1)! from the numerator and denominator leaves
1/n
as the probability. Did you answer this riddle correctly?
YES NO
3 Gallon Jug And 5 Gallon Jug
You have a 3-gallon and a 5-gallon jug that you can fill from a fountain of water.
The problem is to fill one of the jugs with exactly 4 gallons of water. How do you do it?
You've got to defuse a bomb by placing exactly 4 gallons (15 L) of water on a sensor. The problem is, you only have a 5 gallon (18.9 L) jug and a 3 gallons (11 L) jug on hand! This classic riddle, made famous in Die Hard 3.
The problem is to fill one of the jugs with exactly 4 gallons of water. How do you do it?
You've got to defuse a bomb by placing exactly 4 gallons (15 L) of water on a sensor. The problem is, you only have a 5 gallon (18.9 L) jug and a 3 gallons (11 L) jug on hand! This classic riddle, made famous in Die Hard 3.
Hint:
Fill the 5-jug up completely. There will be, of course, 5 gallons in the 5-jug. You must fill all the gallons up to the top, otherwise you don't actually know how much you have.
Use the water from the 5-jug to fill up the 3-jug. You're left with 3 gallons in the 3-jug and 2 gallons in the 5-jug.
Pour out the 3-gallon jug. You're left with nothing in the 3-jug and 2 gallons in the 5-jug.
Transfer the water from the 5-jug to the three jug. You're left with 2 gallons in the 3-jug. And nothing in the 5-jug.
Fill up the 5-jug completely. You now have 2 gallons in the 3-jug and 5 in the 5-jug. This means that there is 1 gallon (3.8 L) of space left in the 3-jug.
Use the water from the 5-jug to fill up the 3-jug. Fill up the last gallon of space in the 3-jug with the water from the 5-jug. This leaves you with 3 gallons in the 3-jug, and 4 gallons in the 5-jug.
Fill the 3-jug completely with water. You now have 3 gallons (11.4 L) of water.
Transfer this water into the 5-jug. You now have nothing in the 3-jug, and 3 gallons (11.4 L) in the 5-jug.
Re-fill the 3-jug with water. You now have 3 gallons (11.4 L) in the 3-jug and 3 gallons in the 5-jug.
Fill the 5-jug with water from your 3-jug. You now have 1 gallon (3.8 L) in the 3-jug and 5 gallons (18.9 L) in the 5-jug. This is because, in the last step, you only had 2 gallons (7.6 L) of space left over, so you could only pour 2 gallons.
Pour out the 5-jug and refill it with your 1 gallon. You now have nothing in the 3-jug and 1 gallon in the 5-jug
Fill up the 3-jug. You now have 3 gallons (11.4 L) in the 3-jug and 1 in the 5-jug.
Transfer the 3 gallons (11.4 L) of water into the 5-jug to end up with 4 gallons (15.1 L). Simply pour over your three gallons into the 5-jug, which only had 1 gallon (3.8 L) in it previously. 1+3=4, and a successfully defused bomb. Did you answer this riddle correctly?
YES NO
Use the water from the 5-jug to fill up the 3-jug. You're left with 3 gallons in the 3-jug and 2 gallons in the 5-jug.
Pour out the 3-gallon jug. You're left with nothing in the 3-jug and 2 gallons in the 5-jug.
Transfer the water from the 5-jug to the three jug. You're left with 2 gallons in the 3-jug. And nothing in the 5-jug.
Fill up the 5-jug completely. You now have 2 gallons in the 3-jug and 5 in the 5-jug. This means that there is 1 gallon (3.8 L) of space left in the 3-jug.
Use the water from the 5-jug to fill up the 3-jug. Fill up the last gallon of space in the 3-jug with the water from the 5-jug. This leaves you with 3 gallons in the 3-jug, and 4 gallons in the 5-jug.
Fill the 3-jug completely with water. You now have 3 gallons (11.4 L) of water.
Transfer this water into the 5-jug. You now have nothing in the 3-jug, and 3 gallons (11.4 L) in the 5-jug.
Re-fill the 3-jug with water. You now have 3 gallons (11.4 L) in the 3-jug and 3 gallons in the 5-jug.
Fill the 5-jug with water from your 3-jug. You now have 1 gallon (3.8 L) in the 3-jug and 5 gallons (18.9 L) in the 5-jug. This is because, in the last step, you only had 2 gallons (7.6 L) of space left over, so you could only pour 2 gallons.
Pour out the 5-jug and refill it with your 1 gallon. You now have nothing in the 3-jug and 1 gallon in the 5-jug
Fill up the 3-jug. You now have 3 gallons (11.4 L) in the 3-jug and 1 in the 5-jug.
Transfer the 3 gallons (11.4 L) of water into the 5-jug to end up with 4 gallons (15.1 L). Simply pour over your three gallons into the 5-jug, which only had 1 gallon (3.8 L) in it previously. 1+3=4, and a successfully defused bomb. Did you answer this riddle correctly?
YES NO
A Man Buys A Goat For $60 Riddle
A man buys a goat for $60. Then sells it for $70. Then he buys it back at $80 but sells is again for $90.
How much did he make?
How much did he make?
Hint:
He made $20. $10 the first time, $70 - $60 = $10, and $10 the second time, $90 - $80 = $10, for a total of $20. Did you answer this riddle correctly?
YES NO
YES NO
Building With Silver And Gold
Hint:
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