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30 to 2 LLC

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Welcome to the Math Challenge Bank!

Can You Escape The CPR ESCAPE ROOM Challenge?

 

In the CPR Escape Room Challenge, we know that a little brain-boosting goes a long way. That’s why we offer unlimited access to our extensive Math Challenge Bank, loaded with critical-thinking puzzles and rescue-based calculations to keep teams sharp and strategic.

Math Challenge Bank- Choose from any scenarios or make y

 

Math Challenge Bank


Supplies Needed:

  • Paper
  • Pen
  • Calculator (optional)


Validator Setup:
Prepare the math riddles on separate pieces of paper. Ensure the riddles are clear and legible. Provide instructions to the players.


Validator Notes:
Observe players to ensure they follow the rules. Provide feedback and hints if necessary.


Easy Math Riddles:

  1. What is 10 + 5?
  2. What is 12 - 7?
  3. What is 3 × 4?
  4. What is 20 ÷ 4?
  5. What is the square of 6?
  6. What is 15 + 8?
  7. What is 25 - 9?
  8. What is 5 × 7?
  9. What is 42 ÷ 6?
  10. What is 9 × 9?
  11. What is 18 + 23?
  12. What is 45 - 17?
  13. What is 8 × 3?
  14. What is 36 ÷ 9?
  15. What is the square root of 49?
  16. What is 14 + 19?
  17. What is 100 - 56?
  18. What is 6 × 12?
  19. What is 81 ÷ 9?
  20. What is the cube of 3?


Medium Math Riddles:

  1. If a lifeguard performs CPR at a rate of 100 compressions per minute, how many compressions will they deliver in 2 minutes?
  2. During rescue breathing, a lifeguard gives one breath every 5 seconds. How many breaths are given in 1 minute?
  3. An AED requires pads to be placed on the upper right chest and lower left side. If each pad covers an area of 100 square centimeters, what is the total area covered by both pads?
  4. The recommended depth for adult chest compressions is at least 2 inches. Convert this depth to centimeters.
  5. To prevent fatigue, lifeguards switch roles every 2 minutes during CPR. If a rescue lasts for 10 minutes, how many times do they switch roles?
  6. A lifeguard spots a drowning victim 30 meters away and swims at a speed of 1.5 meters per second. How long does it take to reach the victim?
  7. A portable oxygen tank contains 600 liters of oxygen and delivers it at a rate of 15 liters per minute. How long will the oxygen supply last?
  8. A lifeguard scans a pool area of 250 square meters every 30 seconds. How many square meters do they scan per second?
  9. A lifeguard completes 4 hours of CPR training every month. How many hours of training do they complete in a year?
  10. Each rescue breath delivers approximately 500 milliliters of air. How much air is delivered after 12 rescue breaths?


Hard Math Riddles:

  1. If the normal breathing rate for an adult was multiplied by how long a breath should last and divided by the rescue breath rate for an infant, what would be the answer?
  2. If you have 3 times the normal breathing rate and it takes 10 seconds for a rescue breath, how many breaths in 1 minute?
  3. A normal CPR cycle is 30 compressions to 2 breaths. If you do 3 cycles, how many total actions are performed?
  4. If you have 5 times the amount of chest compressions than breaths in 1 minute, how many compressions are done if you have 12 breaths?
  5. The ratio of rescue breaths to chest compressions is 1:30. If you perform 5 cycles, how many total breaths and compressions are there? 
  6. Team Coordination:
    During a two-rescuer CPR scenario, one rescuer is performing chest compressions while the other manages the airway. If they switch roles every 2 minutes to avoid fatigue and a total of 8 switches occur, how long did the resuscitation effort last?
  7. Pool Incident:
    A lifeguard spots a swimmer 40 meters away in distress. If the lifeguard swims at 2 meters per second and it takes 8 seconds to assess and activate the Emergency Action Plan (EAP), how long will it take to reach the victim?
  8. Oxygen Flow:
    A rescue breathing bag delivers oxygen at a flow rate of 10 liters per minute. If a rescuer uses the bag for 12 minutes, how much oxygen is consumed?
  9. Rescue Scenario Timing:
    A lifeguard witnesses a victim collapse and immediately starts CPR. The AED arrives after 4 minutes. If chest compressions were started at a rate of 120 compressions per minute, how many compressions were performed before the AED was applied?
  10. Head and Spinal Injury:
    You suspect a spinal injury in a victim and need to immobilize the head while maintaining airway access. If it takes 2 minutes to stabilize the head and you are performing rescue breaths at a rate of 1 breath every 6 seconds, how many breaths will you give during this process?
  11. First Aid for Severe Bleeding:
    A victim is losing blood at a rate of 500 milliliters per minute due to a severe arterial bleed. If it takes 3 minutes for the rescuer to apply direct pressure and a tourniquet, how much blood is lost in that time?
  12. Heat Stroke Response:
    A lifeguard needs to lower a heat stroke victim's body temperature from 41°C to 38°C. If the cooling process lowers body temperature by 0.2°C per minute, how long will it take to reach the desired temperature?
  13. Shallow Water Rescue:
    A lifeguard spots a victim in shallow water, 15 meters from their location. The lifeguard can walk through shallow water at a speed of 1.2 meters per second. How long will it take to reach the victim, accounting for a 5-second delay to pick up the rescue tube?
  14. Kinetic Energy in CPR:
    During chest compressions, a rescuer applies a force of 50 newtons over a compression depth of 5 centimeters (0.05 meters). What is the work done during one compression?
  15. AED Use Timing:
    A rescuer needs to attach AED pads, analyze the heart rhythm, and deliver a shock if needed. If attaching the pads takes 15 seconds, analyzing the rhythm takes 20 seconds, and delivering the shock takes 5 seconds, how much time is spent preparing the AED before CPR can resume?

Math Challenge Bank-Answers

   

 

  1. 15
  2. 5
  3. 12
  4. 5
  5. 36
  6. 23
  7. 16
  8. 35
  9. 7
  10. 81
  11. 41
  12. 28
  13. 24
  14. 4
  15. 7
  16. 33
  17. 44
  18. 72
  19. 9
  20. 27


Medium Math Riddles: 

  1. 1. 200 compressions
  2. 2. 12 breaths
  3. 3. 200 square centimeters
  4. 4. 5 centimeters
  5. 5. 5 switches
  6. 6. 20 seconds
  7. 7. 40 minutes
  8. 8. 8.33 square meters per second
  9. 9. 48 hours
  10. 10. 6,000 milliliters or 6 liters


Hard Math Riddles:

  1. Answer: 20
  2. Answer: 18
  3. Answer: 96
  4. Answer: 60
  5. Answer: 16 
  6. 16 minutes (8 switches × 2 minutes per switch).
  7. 28 seconds (8 seconds for EAP + 20 seconds to swim).
  8. 120 liters (10 liters/min × 12 minutes).
  9. 480 compressions (120 compressions/min × 4 minutes).
  10. 20 breaths (120 seconds ÷ 6 seconds per breath).
  11. 1,500 milliliters or 1.5 liters (500 ml/min × 3 minutes).
  12. 15 minutes ((41°C - 38°C) ÷ 0.2°C per minute).
  13. 17.5 seconds (15 meters ÷ 1.2 m/s = 12.5 seconds; 12.5 + 5 = 17.5 seconds).
  14. 2.5 joules (Work = Force × Distance = 50 N × 0.05 m).
  15. 40 seconds (15 seconds + 20 seconds + 5 seconds).

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