Conflicting Claims About the Effect of Exercise on the Rate of Clothespin Squeezing * Hypothesis: If a person does not exercise before to squeeze a clothespin‚ then they will be able to squeeze the clothespin more times in a minute than if they do exercise first. Without exercise the person will have more energy to squeeze the clothespin more times than the other who exercises first and might get tired more rapidly. * Materials: * Clothespin * Stop watch * Pen or Pencil
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Question/Problem: How does resting or exercising affect the rate of clothespin squeezes we are able to do in a minute? Background Information: It was stated by heart.org‚ “Your resting heart rate is the heart pumping the lowest amount of blood you need because you’re not exercising… A lower heart rate is also common for people who get a lot of physical activity or are very athletic. Active people often have lower heart rates because their heart muscle is in better condition and doesn’t need to work
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Effect of exercise on squeezing a clothespin Natasha Hakim‚ Biology H‚ Mr.Onderdonk Introduction Does exercise make your muscles tired? In my controlled experiment I investigated this problem. My hypothesis was “If I rest first then I can squeeze the clothespin more times” My reason behind this is because during exercise I think you tire yourself out more‚ so resting before squeezing could increase number of squeezes
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Effect of Exercise on Muscle Fatigue Question: Does exercise such as jumping jacks effect muscle fatigue? Hypothesis: This experiment tests the effect of exercise (jumping jacks) on muscle fatigue of the body. Exercise will make a person squeeze a clothespin fewer times in one minute compared to the person not exercising because exercising takes away a muscle’s energy. Therefore a resting person will have more energy for the clothespin squeezing. Methods and Materials: Materials for this experiment
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Investigate the effect of on exercise on the heart rate. Aim: To find out if there is any relevant link between the amounts of exercise taken to increase a person heart rate. Equipment needed: Stop watch Screen volunteer P.E kit Calculator Record sheet Type of exercise: skip for few minutes ‚ then break in between and again repeat it once or twice. Method: First of all‚ we needed to take the resting heart rate of the person who is about to skip. Then‚ with the stopwatch one
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Effect of Exercise on Heart Rate. Aim: The aim of this experiment is to find out how different intensities of exercise effect the heart rate I will measure it in beats per minute using a polar heart rate monitor. Hypothesis: I predict that as I increase the intensity of the exercise I do‚ that my heart rate will increase. This is because as I exercise more intensely I will need more blood to my muscles to supply oxygen and take away carbon dioxide; therefore my heart is going to have to beat
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The Effects of Aerobic Exercise on Heart Rate Introduction: Our bodies need to be in balance in order to function properly‚ and there are many ways the body maintains balance‚ or homeostasis. Homeostasis is the maintenance of nearly constant conditions in the internal environment. Our normal heart rate is an example of our body in homeostasis and any sort of change‚ or stimulus‚ can alter it. Exercise‚ adrenaline in the blood‚ and a low blood pH are all stimuli that increase the heart rate. Exercise
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given to the movement of air in and out of the lungs; the rate of pulmonary ventilation is defined as the tidal volume multiplied by the number of breaths taken per minute. Tidal volume is the volume of air breathed in or out during one cycle of quiet breathing. There are a few different factors that can affect the pulmonary ventilation rate but the most common and often most noticeable variation in pulmonary variation rate occurs during exercise. During normal quiet respiration‚ the average person
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Purpose Name Due Date Clothespin Lab / Muscle Fatigue What are the affects of anaerobic respiration on you muscles? Background Normally‚ muscles use oxygen through a process known as cellular/aerobic respiration to make energy (or ATP) from sugar (glucose). This process is very efficient and produces 38 ATPs for each molecule of glucose. Carbon dioxide and water are the results of this reaction. When muscles undergo rigorous exercise they require more oxygen to make ATP than the
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Lab#: 15 Title: Exercise/pulse rate Aim: To investigate the effect of exercise on the pulse rate Materials/ Apparatus: Stop watch Diagram: Procedure: 1. The three middle fingers were placed just behind the bottom of the wrist as indicated in the diagram in order to see if the pulse could be felt. 2. (a) If the pulse was not felt the three fingers were moved about until it could be felt. (b) Changing the hand also helped to find the pulse. 3. The number of pulsation
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