The respiratory system is composed of the nasal cavity‚ nostril‚ oral cavity‚ pharynx‚ larynx‚ trachea‚ carina of trachea‚ right main bronchus‚ right lung‚ left main bronchus‚ left lung‚ and diaphragm. These major organs collectively work together to give the body oxygen and eliminate carbon dioxide as we breathe. In order for the respiratory system to be fully capable of function‚ four procedures (pulmonary ventilation‚ external respiration‚ transport of respiratory gases‚ internal respiration)
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digestive and respiratory system are interrelated because although each of these systems have their own individual purposes. The digestive system takes the food that is eaten and breaks it down into smaller molecules that can be absorbed into the bloodstream. Cells can then use the molecules for their maintenance. The respiratory system takes in oxygen from the atmosphere and then passes it into the bloodstream in order for it to be delivered to all the cells in the body. The circulatory system delivers
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Respiratory System Powerpoint — Presentation Transcript * 1. The Respiratory System By:Sydney Wright‚ Constance Nevels‚ Fatimah Austin and Carol Clay * 2. Primary Function of Respiratory System The respiratory system supplies the blood with oxygen so that the blood can deliver oxygen to all parts of the body. And also removes carbon dioxide waste that cells produce. * 3. * 4. * 5. * 6. * 7. * 8. * 9. Respiratory System Structure Nasal Cavity: Passes
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Science level 3 Extended National Diploma – medical profile Unit 11: Physiology of human body systems (10 credits‚ 60 hours) Assignment title 2 Assignment 2/4: Physiology of the Cardiovascular and Respiratory Systems (P3‚ P4‚ M2‚ M3) Outcome 2 Be able to relate the structure of the circulatory system to its function in a multi-cellular organism Outcome 3 Be able to relate the structure of the respiratory system to its function in a multi-cellular organism In this assessment you will have opportunities
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Respiratory System Mechanics Simulation Lab Activity 1: MRV __7500__ ml/min =500 tv x 15bmp Does expiratory reserve volume include tidal volume? Explain. Expiratory reserve volume (ERV) does not include tidal volume. Expiratory reserve volume is the amount of air that can be expelled after a normal tidal exhalation. This means that tidal volume is not included in the ERV measurement. Activity 2: FEV1‚ as % of VC Radius FEV1 Vital Capacity FEV1% 5.00 3541 4791 73.90 4.50
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Respiratory System Webquest Name__________________ Use the website below to access the answer for the following questions. http://teachhealthk-12.uthscsa.edu/studentresources/AnatomyofBreathing3.swf 1. After watching the intro (replay if needed) select continuous breathing. a. What happens to the rib cage during inhalation? b. What happens to the diaphragm during inhalation? c. What happens to the rib cage during exhalation? d. What happens to the diaphragm during exhalation? 2
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Student Name: Name of Group Members: Date: Introduction: In this lab‚ you will be examining many characteristics of a rat’s anatomy. Dissections help researchers get a 3-dimensional picture of how the systems of a body work together. Now you’ll have the opportunity to see how the respiratory‚ digestive and circulatory system are arranged spatially. The Classification of the Rat (Rattus norvegicus): Kingdom: Animalia Phylum: Chordata Subphylum: Vertebrata Class: Mammalia
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Energy Energy can be found in many forms. These forms can be- Chemical- usually found in substances Heat- this slows down energy and you may become dehydrated Sound- Your body absorbs this‚ and if you feel the energy from upbeat music Electrical – Your body absorbs this Light- Direct sunlight gives your body energy. A chemical bond that is made happens between two atoms or molecules. The energy can only be seen when the atoms or molecules have created a chemical reaction
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The digestive‚ respiratory and the cardiovascular system are all interrelated in order to make the human body work effectively and efficiently by working as an orchestra. The cardiovascular system and the respiratory will work together in order to perform the gas exchange which is passing of oxygen from the alveoli into the blood flow and then the carbon dioxide passes trough the blood flow and is breathed out from the body. This means oxygen (in) CO2 (out).
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Respiratory System A frog’s respiratory system is much different than humans. First‚ the lungs in a frog have thin walls and are shaped like balloons. When frogs swim‚ they fill their lungs with air‚ which helps them stay buoyant while swimming. Frogs also do not have diaphragms compared to humans. They only breathe through their nose. They use muscles in their throat sacs to help move the air in‚ and then is pushed to the lungs. During this time‚ their mouth is closed. Body contractions allow
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