In amphibians, cutaneous gas exchange is particularly important, especially in some species of lungless salamanders. Draw the circulation of oxygen-rich and oxygen-poor blood during cutaneous gas exchange for a lungless salamander. Upload your image (may be hand drawn or digitally rendered).
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- In spiders, gas exchange is supplied by (mark all that apply) book lungs book gills Malpighian tubules epidermis tracheae spiracles green glands Home DepotNeither cnidarians nor turbellarians possess a circulatory system. For most large, active animals, this would pose a (fatal) problem. Describe and discuss the features of large active cnidarians ands turbellarians that allow them to respire, nourish their cells, and excrete despite the absence of a conventional circulatory system.Respiratory System of a bivalve: Mytilus/Mussles Parameter Identification/Description/Enumeration Number of gill(s) Position/location of the gills Type of gill (according to the arrangement and structure of the gill filaments) Points of entry and exit of water to and from the mussel Functions of the gill(s)
- During bird ventilation, the lungs and air sacs are all full at the same time as respiration takes place continuously? true or falseO The toxin causes inappropriate firing of neurons leading to periods of rapid twitching that infected individuals experience as summation leading to tetanus. QUESTION 6 Mammalian lungs are very different in structure compared to amphibian lungs. The lungs of mammals have highly complex branching patterns of airways. The lungs of amphibians are simpler and more sac-like. Over all, the lungs of mammals are capable of much greater rates of gas exchange compared to amphibians. Why is this? O The more complex structure provides more surface area across which gas exchange can occur. O A complex structure means that gases have more contact time with gases compared to a simpler structure. O Mammalian lungs are usually much bigger relative to their bodies compared to amphibian lungs. O The respiratory membranes of mammals are able to diffuse gases across them much faster than amphibians. QUESTION 7 Click Save and Submit to save and submit. Click Save All Answers to save all answers. P Type…O The toxin causes inappropriate firing of neurons leading to periods of rapid twitching that infected individuals experience as surnmation leading to tetanus. QUESTION 6 Mammalian lungs are very different in structure compared to amphibian lungs. The lungs of mammals have highly complex branching patterns of airways. The lungs of amphibians are simpler and more sac-like. Over all, the lungs of mammals are capable of much greater rates of gas exchange compared to amphibians. Why is this? O The more complex structure provides more surface area across which gas exchange can occur. O A complex structure means that gases have more contact time with gases compared to a simpler structure. O Mammalian lungs are usually much bigger relative to their bodies compared to amphibian lungs. O The respiratory membranes of mammals are able to diffuse gases across them much faster than amphibians. QUESTION 7 Click Save and Submit to sve and submit. Click Save AL Answers to save all answers. P Type here…
- Trace the path of a mammalian red blood cell from the site of external respiration (gas exchange with environment) to the site of internal respiration (gas exchange with the cells). Include all heart chambers, named blood vessels, and the capillaries, veins and arteries where appropriate. For the vessels, make sure to indicate to which circuit they belong. Write your answers as a numbered list (see formatting menu -- click the three dots for "more" to see lists); do not write sentences. Edit View Insert Format Tools Table 12pt v Paragraph vTrace the path of a mammalian red blood cell from the site of external respiration (gas exchange with environment) to the site of internal respiration (gas exchange with the cells). Include all heart chambers, named blood vessels, and the capillaries, veins and arteries where appropriate. For the vessels, make sure to indicate to which circuit they belong. Write your answers as a numbered list (see formatting menu -- click the three dots for "more" to see lists); do not write sentences. Edit View Insert Format Tools Table Daragranh YIf water passed over the gills of fish in the same direction as blood flow through the capillaries, how would gas exchange be affected? Select all correct choices. More oxygen would diffuse from the water into the fish's bloodstream. Less oxygen would diffuse from the water into the fish's bloodstream. More carbon dioxide would diffuse out of the fish's bloodstream into the water. Less carbon dioxide would diffuse out of the fish's bloodstream into the water. Gas exchange would remain the same, regardless of the direction of water flow.
- If the frontal cilia of an ascidian pharynx were immobilized what would be the likely consequence(s) closure of siphons no mucus net spreading cessation of gas exchange cessation of the feeding currentYou receive animal care and use committee approval to catch a fish, prop open its operculum (gill cover), tie a string around its tail, and tow it backwards through the water for experimental purposes. The fish is then released unharmed. This action forces water to flow backwards over the gill filaments and in between the gill lamellae. What effect would this backwards water flow have on respiration? It would reduce efficiency of gas exchange between water and blood The only effect would be due to the fish's discomfort from this treatment. O It would improve efficiency of gas exchange between water and bloodANIMAL RESPIRATION -PROVIDE THE RESPIRATION PROCESS ON THE FOLLOWING PICTURES. - SIGNIFICANCE OF RESPIRATION IN ANIMALS - BENEFITS OF ANIMALS THAT CAN PROVIDE Respiration through the skin (e.g. earthworm) Respiration through tracheae (e.g. insects) Body tissues Body tissues Irachea Tracheoles (air tubes) Air sacs. Air Air Haemocoel CO2 Trachea Trachea Respiration through gills (e.g. Fish) Body tissues Respiration through lungs (e.g. dog) Gill Body ti ssues Gills Ø2 02 Water! Air Trachea (windpipe) CO2 Gill chamber OQ2 Water Al veoli, (air sac) Lung ights Reserved.