Total volume of the bacterium the cell envelope occupy is 0.000628
volume of the E. coli is 3.14× 0.4²×2
= 1.0048
Total volume of the bacterium the cell envelope occupy 2× 3.24× 0.01
=0.000628
Escherichia coli, also known as E. coli, is a rod-shaped, facultatively anaerobic, Gram-negative coliform bacteria found in the lower intestine of warm-blooded animals.
Ground beef in particular can be thoroughly cooked to kill E. coli germs. The fluids of ground beef should run clear and the meat should no longer be pink. When cooking hamburgers, the thickest section of the patty should register 160 degrees on a meat thermometer; the interior of the patty should not be pink.
Complete question:
E. coli cells are rod shaped, about 2 mm long and 0.8 mm in diameter.The volume of a cylinder is ?r2h, where h is the height of the cylinder.
E. coli has a protective cell envelope 10 nm thick. What percentage of the total volume of the bacterium does the cell envelope occupy?
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a specimen is suspected to contain which one of the following organisms because it may be cultured by placing it on an agar plate with an overlay growth of escherichia coli?
By putting a specimen on an agar plate with only an overlay growth of an Escherichia coli Acanthamoeba species, it is possible to cultivate the suspected organism.
What is an infection with Escherichia coli?Overview. Normally, healthy humans and animals' intestines contain E. coli bacteria. The majority of E. coli strains either do not cause diarrhoea or only do so temporarily. Others, such as E. coli O157:H7, can, however, result in vomiting, excruciating stomach aches, and bloody diarrhoea.
Where can I find Escherichia coli?By consuming infected food, consuming contaminated water, or touching your mouth with hands that have been contaminated with E. coli bacteria, you can come into contact with and ingest the germs. Meats: E-contamination contamination occurs in meats.
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Correct option is :
A specimen suspected of containing which organism may be cultured by placing it on an agar plate with an overlay growth of Escherichia coli?
A. Entamoeba coli
B. Schistosoma japonicum
C. Acanthamoeba species
D. Taenia species
Molecules move into and out of the cell by active and 4 points passive transport every second. What is the difference between the 2 types of transport? active transport passive transport requires ATP energy facilitated diffusion osmosis exocytosis
Molecules move into and out of the cell by active and passive transport every second. active transport require ATP energy whereas passive transport does not require energy.
Both passive diffusion and active transport are fundamentally different ways that solutes move across membranes. The solution reaches equilibrium across the membrane as a result of passive diffusion, which only uses the electrochemical (concentration) gradient of the solute as an energy source. Passive diffusion can take two forms: simple passive diffusion, in which the solute simply dissolves into and diffuses through the lipid bilayer, and facilitated passive diffusion, in which the solute crosses the membrane at specific locations where diffusion is aided by solute-specific facilitators or carriers. A nonequilibrium, net buildup (uptake) of the solute is produced by active transport, which demands additional energy, frequently in the form of ATP, and occurs on one side of the membrane.
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What is a disadvantage of using an extended weather forecast to plan an event? (1 point)
O Extended weather forecasts may not accurately predict weather for distant dates.
O Extended weather forecasts may not contain data from reputable sources.
O Extended weather forecasts are not based on scientific evidence.
O Extended weather forecasts are not developed using technological tools.
disadvantages of event planning with a long-term weather forecast Long-range weather forecasts might not include information from reliable sources.
What drawbacks are there to weather forecasting?The following are some forecasting-related drawbacks: Predictions are Never 100% Accurate - Predicting the future with absolute confidence is nearly impossible, and projections are never 100% accurate. Your projections will never be accurate, irrespective if you have a superb methodology in place or forecasting professionals on staff.
What is the primary drawback of weather prediction?Even a small change in one layer, like a butterfly flapping its wings, might cause a chain reaction that affects the other layers and result in drastically different weather patterns. Because of all the variation and ambiguity.
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Add a new fresh water source to the model of a factory that has been polluted by acid rain and its water run off. Observes the changes and record your observation in the lab guide. how does the new fresh water source affect the already polluted water and ground?
Introducing a new freshwater source to a model of a factory that has been polluted by acid rain and its water runoff can have different effects depending on the nature of the pollution and the characteristics of the new water source.
Here are a few possible observations:
If the freshwater source is alkaline, it can neutralize the acidity of the polluted water, reducing the negative effects of acid rain on aquatic life and the environment.If the freshwater source is high in dissolved oxygen, it can support the growth of aerobic microorganisms that can break down pollutants in the water, leading to water purification.If the new water source has a high flow rate, it can dilute the pollution and reduce the concentration of pollutants in the water, improving water quality.If the new water source is coming from an underground aquifer, it can help to recharge the groundwater and reduce the impact of acid rain on the groundwaterLearn more about acid rain here:
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What can we learn from the journal "Chromatin domain changes related to 3d genome organization in large cohorts of schizophrenia and bipolar disorder brains"?
Major issues in cell biology revolve around figuring out how chromatin is arranged inside the nucleus and how its 3D architecture affects gene regulation, cell fate choices, and evolution.
We still know very little about the mechanisms underpinning chromatin structure and how it may be formed, reset, and maintained despite amazing advances in this area. In this Review, we cover recent advances in quantitative biology, genomics, and cell and molecular biology techniques that have provided new insights into chromatin architecture and describe how these new ideas have been applied to tackle significant biological problems in development and illness.Eukaryotic cells include a structure made up of protein, RNA, and DNA called chromatin. Its main job is to compress very long DNA molecules into a smaller, denser structure, which keeps the strands from tangling and is crucial for strengthening the DNA during cell division and reducing DNA damage.
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