Togo To Malawi Riddle
Hint:
Seas Touching Continents Riddle
Hint:
There is only one such sea - the Mediterranean Sea, which touches Europe, Asia and Africa. Did you answer this riddle correctly?
YES NO
YES NO
Occupying Continents Riddle
Hint:
That Ruddy Bird Riddle
I don't believe in wands
Or in the Quidditch World Cup,
And this is the last time I'll say this,
Shut that ruddy bird up!
Who am I?
Or in the Quidditch World Cup,
And this is the last time I'll say this,
Shut that ruddy bird up!
Who am I?
Hint:
New Years And Christmas Day Riddle
Everyone knows that both Christmas Day and New Year's Day always fall on the same day of the week. However, in 1939, the year of the outbreak of World War II, Christmas fell on a Monday and New Year's fell on a Sunday. Why?
Hint:
In any given year Christmas Day and New Year's Day fall on different days of the week. Christmas occurs around 51 weeks later in the year than New Years Day. 1939 was no different. Did you answer this riddle correctly?
YES NO
YES NO
The First Fireworks Riddle
Hint:
The Chinese invented fireworks. The Chinese New Year is celebrated on the 2nd New Moon after the winter solstice, determined by the Lunar Calendar. Did you answer this riddle correctly?
YES NO
YES NO
Eight Holy Days
Hint:
3 Monkeys In A Room
You are in a room with 3 monkeys. One monkey has a banana, one has a stick, and one has nothing. Who is the smartest primate?
Hint:
Liquid But Not Water Riddle
Im a liquid but Im not water
Im sticky but Im not glue
Im sweet but Im not melted chocolate
Im found in a comb but Im not hair
Im created by an insect but Im not a web
What am I?
Im sticky but Im not glue
Im sweet but Im not melted chocolate
Im found in a comb but Im not hair
Im created by an insect but Im not a web
What am I?
Hint:
Squeezed From A Bottle
I get squeezed from a bottle
But I am not sticky glue
I am used to wash your hair
Which means that I am _ _ _ _ _ _ _
But I am not sticky glue
I am used to wash your hair
Which means that I am _ _ _ _ _ _ _
Hint:
30 Sacks Of Coconuts
An intelligent trader travels from one place to another with 3 sacks having 30 coconuts each. No sack can hold more than 30 coconuts. On the way, he passes 30 check points. At each check point, he has to give one coconut for every sack he is carrying. What is the maximum number of coconuts that he can have with him at the end of his journey?
Hint:
He will have 25 coconuts with him at the end. The trick is to reduce the number of sacks as you pass checkpoints.
The first 10 checkpoints require 3 coconuts each, which empties his first sack. The next 15 checkpoints require 2 coconuts each, which will empty his second stack. Now, he is left with 1 sack and 5 more checkpoints. So, the 5 checkpoints will take 1 coconut each. Therefore, he will be left with 25 coconuts. Did you answer this riddle correctly?
YES NO
The first 10 checkpoints require 3 coconuts each, which empties his first sack. The next 15 checkpoints require 2 coconuts each, which will empty his second stack. Now, he is left with 1 sack and 5 more checkpoints. So, the 5 checkpoints will take 1 coconut each. Therefore, he will be left with 25 coconuts. Did you answer this riddle correctly?
YES NO
Found Dead On A Bed
A man was found dead on his bed with blood on his pillow, a broken stick with a mark on it with parts of it under the bed, and a gun on the bed. (Now pay attention to these series of questions) Was it murder or suicide? If murder, who did it and why? If suicide, who provoked him to do it and why?
Hint:
It was suicide. The man was the smallest midgit in the world and his friend was the second smallest midget in the world and they worked at a circus. His friend was jealous of him so he broke a yardstick (note: that was the broken stick on the bed) and marked it at four feet. When his friend measured his height, it looked like he grew making him very depressed which led to killing himself thus making his friend the smallest midget in the world. (Bet you never saw that one coming). Did you answer this riddle correctly?
YES NO
YES NO
Longing Flames At Home
If you travel overseas
Then you need to buy a case
If you want log flames at home
Then you need a _ _ _ _ _ _ _ _ _
Then you need to buy a case
If you want log flames at home
Then you need a _ _ _ _ _ _ _ _ _
Hint:
The Traffic Light Riddle
There is a traffic light at the top of a hill. Cars can't see the light until they are 200 feet from the light.
The cycle of the traffic light is 30 seconds green, 5 seconds yellow and 20 seconds red.
A car is traveling 45 miles per hour up the hill.
What is the probability that the light will be yellow when the driver first crests the hill and that if the driver continues through the intersection at her present speed that she will run a red light?
The cycle of the traffic light is 30 seconds green, 5 seconds yellow and 20 seconds red.
A car is traveling 45 miles per hour up the hill.
What is the probability that the light will be yellow when the driver first crests the hill and that if the driver continues through the intersection at her present speed that she will run a red light?
Hint:
The probability of the driver encountering a yellow light and the light turning red before the car enters the intersection is about 5.5%.
At 45 mph the car is traveling at 66 feet/second and will take just over 3 seconds (3.03) to travel the 200 feet to the intersection. Any yellow light that is in the last 3.03 seconds of the light will cause the driver to run a red light.
The entire cycle of the light is 55 seconds. 3.03/55 = 5.5%. Did you answer this riddle correctly?
YES NO
At 45 mph the car is traveling at 66 feet/second and will take just over 3 seconds (3.03) to travel the 200 feet to the intersection. Any yellow light that is in the last 3.03 seconds of the light will cause the driver to run a red light.
The entire cycle of the light is 55 seconds. 3.03/55 = 5.5%. Did you answer this riddle correctly?
YES NO
An Absentminded Philosopher Riddle
An absentminded philosopher forgot to wind up the only clock in his house. He had no radio, television, telephone, internet, or any other means of ascertaining the time. He therefore decided to travel by foot to his friend's house, a few miles down a straight desert road. He stayed there for the night and when he came back home the following morning, he was able to set his clock to the correct time. Assuming the philosopher always walks at the same speed, how did he know the exact time upon his return? Note: this is not a trick question. The Philosopher did not bring anything to his friend's house, nor did he bring anything back with him on his trip home.
Hint: We can assume that the journey to his friend's and back took exactly the same amount of time.
He Philosopher winds the grandfather clock to a random time right before leaving, 9:00 for example. Although this is not the right time, the clock can now be used to measure elapsed time. As soon as he arrives at his friend's house, the Philosopher looks at the time on his friend's clock. Let's say the time is 7:15. He stays overnight and then, before leaving in the morning, he looks at the clock one more time. Let's say the time is now 10:15 (15 hours later). When the Philosopher arrives home, he looks at his grandfather clock. Let's say his clock reads 12:40. By subtracting the time he set it to when he left (9:00) from the current time (12:40) he knows that he has been gone for 15 hours and 40 minutes. He knows that he spent 15 hours at his friends house, so that means he spent 40 minutes walking. Since he walked at the same speed both ways, it took him 20 minutes to walk from his friend's home back to his place. So the correct time to set the clock to in this example would therefore be 10:15 (the time he left his friend's house) + 20 minutes (the time it took him to walk home) = 10:35. Did you answer this riddle correctly?
YES NO
YES NO
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