The enzyme amylase will affect the breakdown of carbohydrates, but it will not affect the break- down of proteins. The ability of an enzyme molecule to interact with specific molecules is most directly determined by the (1) shapes of the molecules involved (2) number of molecules involved (3) sequence of bases present in ATP (4) amount of glucose present in the cell In the human body, oxygen is absorbed by the lungs and nutrients are absorbed by the small intestine. In a single-celled organism, this absorption directly involves the (1) nucleus (2) chloroplasts (3) cell membrane (4) chromosomes - Many biological catalysts, hormones, and receptor molecules are similar in that, in order to function properly, they must (1) interact with each other at a high pH (2) interact with molecules that can alter their specific bonding patterns (3) contain amino acid chains that fold into a specific shape (4) contain identical DNA base sequences 4 Which system is correctly paired with its function? (1) immune system-intake and distribution of oxygen to cells of the body (2) excretory system-remove potentially dangerous materials from the body (3) digestive system-transport energy-rich molecules to cells Which sequence represents the correct order of events for the production of necessary complex molecules after food is taken in by a multicellular anfinal? (4) circulatory system-produce building blocks of complex compounds diffusion → - (1) diffusion → synthesis → absorption → digestion → circulation (2) circulation synthesis absorption → digestion (3) digestion absorption circulation → diffusion → synthesis (4) synthesis digestion absorption diffusion circulation -
The enzyme amylase will affect the breakdown of carbohydrates, but it will not affect the break- down of proteins. The ability of an enzyme molecule to interact with specific molecules is most directly determined by the (1) shapes of the molecules involved (2) number of molecules involved (3) sequence of bases present in ATP (4) amount of glucose present in the cell In the human body, oxygen is absorbed by the lungs and nutrients are absorbed by the small intestine. In a single-celled organism, this absorption directly involves the (1) nucleus (2) chloroplasts (3) cell membrane (4) chromosomes - Many biological catalysts, hormones, and receptor molecules are similar in that, in order to function properly, they must (1) interact with each other at a high pH (2) interact with molecules that can alter their specific bonding patterns (3) contain amino acid chains that fold into a specific shape (4) contain identical DNA base sequences 4 Which system is correctly paired with its function? (1) immune system-intake and distribution of oxygen to cells of the body (2) excretory system-remove potentially dangerous materials from the body (3) digestive system-transport energy-rich molecules to cells Which sequence represents the correct order of events for the production of necessary complex molecules after food is taken in by a multicellular anfinal? (4) circulatory system-produce building blocks of complex compounds diffusion → - (1) diffusion → synthesis → absorption → digestion → circulation (2) circulation synthesis absorption → digestion (3) digestion absorption circulation → diffusion → synthesis (4) synthesis digestion absorption diffusion circulation -
Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
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Introduction:
- The body system is the network of organs and tissues that interact and depend on one another to carry out particular tasks within the human body.
- There are several body systems, including the digestive, cardiovascular, respiratory, nervous, musculoskeletal, endocrine, immune, urinary, and reproductive systems.
- Each system is essential to preserving the body's overall health and functionality.
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