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Wet mount slide lab report

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thesis antithesis synthesis taoism - A wet mount is made by placing a fluid solution on a slide, suspending a specimen in a solution, and then covering the specimen and the solution with a cover slide. Why would use a wet mount? • To increase the specimens translucency and to make it easier to stain. (Title) Laboratory Report ForWet mount slide preparation Introduction a. Back-round information Wet mount slide preparation: A Drop of water or stain on slide with specimen, then view under a microscope. b. Purpose Comparison between cheek cell and onion cell by using wet mount preparation. c. Apr 03,  · A vaginal wet mount, also called a wet prep or vaginal smear, is a test done to find the cause of vaginitis, an inflammation of the vagina. Your doctor will usually order the test if you’re having. kaiser mfa application southern california

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How to answer Stanford MBA essay questions - Business Insider - Lab Report: Wet Mount, Direct and Indirect Stain Purpose: The purpose of this lab is to perform a direct and indirect stain and to make a wet mount. The purpose is also to view the observable traits, which include the size, shape, and motility of microorganisms. Procedure: The procedure for this lab can be found on d2l under the lab handouts tab. The link is titled “Lab 4A Finish Broth. Wet Mount - This examination can provide the physician with early information regarding infection and the possible need for treatment. Jul 08,  · The Vaginitis Test (Wet Mount) Procedure A vaginitis test is used to help diagnose vaginal infections that don’t affect the urinary tract. It’s also called a . An Analysis of the Demands of a Tragic Hero in Macbeth, a Play by William Shakespeare

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Self Determinism Definition - Wet mount technique is used for preparing eukaryotic cells, such as the cells of plants and animals for the microscope. In order to view bacteria (prokayotes), which are much smaller than plant and animal cells, a different specimen preparation technique is used called a bacterial smear. Step Six - Place a cover slip over the specimen. A wet mount is made by placing a fluid solution on a slide, suspending a specimen in a solution, and then covering the specimen and the solution with a cover slide. Why would use a wet mount? To increase the specimens translucency and to make it easier to stain. • Wet mount. A sample of the vaginal discharge is placed on a glass slide and mixed with a salt solution. The slide is looked at under a microscope for bacteria, yeast cells, trichomoniasis (trichomonads), white blood cells that show an infection, or clue cells that show bacterial vaginosis. social responsibility contacts progressive delivery we accept

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Ancient rome essay - Get Help From - If the organism is pathogenic, there is the possibility of danger to the person in handling viable organisms on a slide. Wet mounts cannot be stored over a longer time. Expected Results: Motility is observed in case of Proteus vulgaris, while Micrococcus luteus is non motile. 2. Hanging Drop Slide. Materials Required: Clean depression slides. Make a wet mount of pond water following the procedure below: Place a drop of pond water on a clean glass slide using the plastic disposable pipette. Cover the pond water on the slide with a coverslip. Try to place the coverslip on at an angle to avid air bubbles. How to Prepare a Wet Mount (Vaseline mount) Living specimens do not survive long in the heat from an intense microscope illuminator bulb, usually because the specimen dries up. This problem is easily solved by preparing a vaseline chamber. Simply take a single cover slip and hold it between thumb and forefinger by the edges. business organisation has adapted its working arrangements to accommodate legislation relating to ri

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buy custom research paper online - Step-by-step video and audio instructions on how to prepare a wet mount specimen of onion bulb epidermis plants includes explanation of microscop. The wet mount tend to dry out quickly under the heat of the microscope light; it is simpler to perform than the wet mount, but it is useful for short-term observation only. The hanging drop is a more complex technique, but it allows for longer-term obervation and more reliable observation of motility. In this lab we observed select examples of protists in order to identify their cellular structures, and determine to which group of protista they belong based on their form of movement. We also made drawings of our observations using light and dissection microscopes to practice proper microscopy skills, including making wet-mount slides and. Better days to come | Power Poetry

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national history day thesis examples - May 20,  · If needed, the teacher can demonstrate the proper technique for making a wet mount slide. If the teacher has access to a microscope with a camera, the slide that is made can projected for the students to see so they know what to look for when making their own. Pre Lab Definitions. Methylene blue is used in this activity to visualize the yeast. PART A. HOW TO MAKE A WET MOUNT Wet mounts are commonly used in the science of Biology. This is an important skill to develop in order to be able to study specimens with a Microscope. This skill is only developed with practice and by following precise instructions. Preparing a Wet Mount: 1. Put one drop of water on the slide. Wet Mount slide When working with nonpathogens, the simplest way to determine motility is to place a few loopfuls of the organism on a clean slide and cover it with a cover glass. In addition to being able to determine the presence or absence of motility, this method is useful in determining cellular shape (rod, coccus, or spiral) and. Online OCR Service - Convert PDF

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Buy essay papers cheap. Dedicated - Microscope slides. Water bottle. Cover slips. Eyedropper/pipette. Iodine. Tweezers. Worksheet PROCEDURE. Preparing the wet mount slide of onion skin. 1. Break an onion slice in two. 2. Carefully pull the slice apart. 3. Use tweezers to pull off a very thin piece of onion skin (the thinner, the better) 4. Place the skin in the center of the slide. Lab 1: Measurement and Microscopy Essay Words | 5 Pages. Kevina Smith Lab 1: Microscopy and the Metric System Part A: Microscopy Purpose The purpose of this experiment was to learn how to use a microscope correctly and perform wet mount slides accurately, . When preparing a wet mount it is important to have a clean microscope slide; a drop of water is added to the slide followed by a cover slip properly placed over the specimen. Another important component of this lab was computing magnification on a compound microscope. Magnification is represented with an . The Life and Popular Actions of Queen Elizabeth

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Primary Writing Paper Worksheets - Printable Worksheets - Preparation Techniques: Dry Mounts, Wet Mount, Squash, Staining. The main methods of placing samples onto microscope slides are wet mount, dry mount, smear, squash and staining. Dry Mount: The dry mount is the most basic technique: simply position a thinly sliced section on the center of the slide and place a cover slip over the sample. Jul 20,  · A wet mount with a sample of a potato shaving was prepared. The wet mount is prepared by placing a drop of water onto a glass slide. Using a scalpel blade, a small portion was thinly sliced from the potato and placed on the slide. A drop of iodine was then added to the slide to stain the wet mount. Iodine will stain the starch granules. Step-by-step video and audio instructions on how to prepare a wet mount specimen of eukaryotic animal cells; specifically epithelial cells from the inside of. Writes Quotes - Quotes about Writes | YourDictionary

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James Wright (poet) - Wikipedia - This lesson begins with the review of the procedures for creating a wet mount slide. I model each step for the students since for most of the students, this is the first slide they have ever created. Take a small slice of onion and gently pull apart a layer of the onion skin. The layer should be thin and transparent. Lab report 1 Setting up and using the microscope. Then they place another thin piece of glass over the slide. The purpose of a wet mount is to protect the microscope lens from the specimen and to provide an even surface for viewing. Additionally, further degradation of the specimen is avoided. For a printer friendly version of this lab, click here.. Background: We will be preparing two (2) types of slides for this lab: a dry mount slide and a wet mount slide.. A dry mount slide is made by placing the specimen directly on a slide and then covering the specimen with a cover-slip. On the other hand, a wet mount slide is made by placing a fluid solution on a slide, suspending a specimen. Express the vector with initial point P and terminal point

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bibliography apa quick pork - The following direct wet mount procedures are provided for your information since, some laboratories still perform this procedure. C. Procedures. 1. Direct saline wet mount. a. Place a drop of saline on the slide. Nov 01,  · If your scope has functional parts that are not included in this image, be sure to describe them in your lab report. Part II. Preparing a wet mount of the letter "e”. 1. With your scissors cut out the letter "e" from the newspaper. 2. Place it on the glass slide so as to look like (e). 3. Cover it with a clean cover slip. See the figure below. Wet mount or temporary mount In a wet mount, the specimen is placed in a drop of water or other liquid held between the slide and the cover slip by surface tension. This method is commonly used, for example, to view microscopic organisms that grow in pond water or other liquid media, especially when studying their movement and behavior. Essay: Service Quality Concerns by

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Homework help for free - essay - For making a wet mount you will need: A. Glass Slides B. Slip Covers C. Pipet D. Water E. Specimen (It is the middle of winter I couldn't get a leaf so I used a piece of paper) Add Tip Ask Question Comment Download. Step 2: Glass Slide and Specimen. Saline wet mount is made by mixing a small quantity (about 2 mg) of faeces in a drop of saline placed on a clean glass slide. The smear is then examined under microscope. Saline wet mount is used for the detection of trophozoites and cysts of protozoa, and eggs and larvae of helminthes. Wet Mount Pond Water Lab Report. what occurs in a sample of pond water over the course of six weeks. Over the six weeks there were qualitative and quantitative data found and recorded. The qualitative data recorded entailed: Water color and smell as well as suspended solids ranging from clear, opaque, and turbid. The quantitative data that was recorded regarded: Temperature, pH, Alkalinity. iiroc report of market share by marketplace mall

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A Comparative Analysis of the Pop Art in America and Great Britain - Lab Report: Klebsiella Pneumoniae. Words 4 Pages. Show More. In order to test the motility of the bacteria, a wet-mount slide, motility agar deep w/TTC and motility agar culture w/ TTC were the stuff that is needed to test the motility. On the wet-mount slide its quite difficult to see the motility of the bacteria for it will only last. Make a wet mount on a plain slide with the inner part of the leaf section facing up (so the inner cells are visible). Look at the slide with the 10x objective to see the general structure, and higher power to see details of cells. A tool called a microtome is extremely helpful for preparing specimens for slide mounting. A microtome allows you. Lab 2: Wet Mount Slides and the Scientific Method Preparing a Wet Mount Slide 1. Place specimen on center of slide 2. add a drop of water onto the specimen (unless specimen is in water) 3. carefully angle the coverslip beside the drop of water, then lower it (to avoid air bubbles) Stained Slides 1. make wet slide mount as described above. A Essay on Poetry

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2010 financial report pfizer products - Internal Proficiency Program for Wet Mount Microscopy. Michigan Regional Laboratory Wet Mount Proficiency Program. The Michigan Regional Laboratory Program seeks to evaluate and document proficiency of practitioners in local health departments for the microscopic examination of vaginal discharge specimens (wet mount analysis). Make a wet mount of live yeast and see if you can observe budding under high power. If you cannot see yeast budding, view a prepared slide of yeast budding under high power. Yeast also reproduce sexually by forming an ascus and eight ascospores. 2. Place the piece of onion on a glass slide and add a drop of the iodine solution. Cover the slide with a cover slip using your best wet-mount making techniques. 3. Observe the onion cell under both low and high power. Make a drawing of one onion cell, labeling all of its parts as you observe them. UNIT 8 RIGHT TRIANGLES NAME PER -

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ged statistical report 2011 dodge - The Lab Report Assignment is the homework that students complete and turn in. VIDEO: How to Make a Wet Mount Slide of Stained Epithelial Cheek Cells. Lab #1: Microscopy Lab Materials. This is the main page for the Microscopy Laboratory Topic of an 8 . Start studying Lab 3 Report- Exercise Learn vocabulary, terms, and more with flashcards, games, and other study tools. Wet mount = better w/ phase contrast. Exposure of individuals to pathogens is more likely when making wet slides as opposed to stabbing a . 3. Place a clean glass slide over the coverslip and press the slide gently to form a seal between the slide and the coverslip. 4. Follow steps 4 and 5 in the hanging-drop procedure. 5. Examine the wet-mount preparation and record your observations in the Lab Report. How to calculate bleed off constant cb from water quality graph. How to plot this graph ? Please hel

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An Analysis of the Ethical Issues in Abortion - 6. After you have colored the diagram correctly above, you need to prepare for phase 3 of this lab by putting the entire salt water wet mount in the dish of tap water to rinse off the salt water from the slide, cover slip AND onion tissue layer. Dry the slide and coverslip then gently dab the onion tissue dry. 7. Materials needed for this lab: Microscopes for students to use (individually, in pairs, or in groups of 3) Glass slides (flat slides work best, not concave) Plastic slide covers Iodine or dye for making the wet mount slides (if the dye does not come with droppers, you will need some plastic pipettes as well). The Lab Report Assistant is simply a summary of the experiment’s questions, diagrams if needed, and data tables that should be addressed in a formal lab report. How did the process of preparing wet-mount slides become easier as you prepared the second wet-mount slide of this exercise? Summary of Our Reviews. rating. out of 5. Picture of Dorian Gray

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A Story of Emily Grierson in A Rose for Emily by William Faulkner - BIO10 Lab 1 9 How to make a wet mount In order to see a specimen it must be carefully placed onto a slide and viewed as a “wet mount”. Place a drop of liquid specimen onto a slide. If the specimen is dry, you may place it on the slide and add a drop of water. Cover the specimen with a . To prepare a wet mount, obtain a microscope slide and the stool specimen. Take a small amount of the specimen and place it on a microscope slide. If the stool specimen is still somewhat solid, add a drop or two of saline to the specimen and mix. Ideally, two smears can be prepared on one slide, of which one can be stained with iodine. essay writing help uk playstation

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Protozoans are unicellular wet mount slide lab report with either plant- or animal-like characteristics. Through careful observation, we analyzed wet mount slide lab report protozoan wet mount slide lab report in order to identify characteristics associated with cell structure and movement of these one-celled organisms. Wet mount slide lab report found that Protists exhibit wet mount slide lab report characteristics that allow them to be categorized into different groups, mainly determined by their locomotion patterns.

Despite differences in locomotion and the varying plant-like and animal-like organelles, all protists share key characteristics and functions that allow them to feed, grow, and reproduce--processes essential for survival and common to complex organisms. Although unicellular, they have a nucleus and membrane-bound organelles, making them functionally complex despite their small size.

Each small protist is a self-supporting unit, carrying out all the processes for survival in just one Marketing Audit (BMW 7 Series) cheap essay writing service. They thrive wet mount slide lab report moisture and can be found on moist soil and in fresh wet mount slide lab report marine bodies of water. There are about Scriptures on depending on God, known species of wet mount slide lab report, commonly classified according to their movement wet mount slide lab report as sarcodines—moving with false feet called pseudopodia or, flagellates—moving with whip-like structures known as flagella, ciliates—moving with short hairs known as cilia, and sporozoans—with no movement.

They all have varying shapes, sizes, and survival strategies. Despite their differences, all protists have several characteristics in wet mount slide lab report. In addition to a nucleus or nuclei to house their genetic material, most protists have mitochondria for metabolic functions, and vacuoles for digestion and excretion. With the help of these and other cellular structures, protists may feed, grow, and reproduce. In this lab wet mount slide lab report observed select examples of protists in order to identify their cellular structures, and determine to which group of protista they belong based on their form of movement.

We also made drawings of our wet mount slide lab report using light and dissection microscopes to practice proper microscopy skills, including making wet-mount slides and cell sizing. By observing, drawing, and classifying protista, we learned about the cell structure and movement patterns of these one-celled organisms. We also learned about wet mount slide lab report differences and similarities of various protist cells. Since we will observe how protists move, it will be interesting to figure out patterns of locomotion. For example, what happens when the protist encounters an obstacle?

Does motion change when the organism is feeding? How does motion relate to where the organism lives? What characteristics do the wet mount slide lab report exhibit: plant, animal, wet mount slide lab report both? Three protists were chosen for observation. See the list of protists below wet mount slide lab report choose three samples. For each of the protists, a Sex Movies Tube was James Wright (poet) - Wikipedia to extract a few drops of culture from the culture jar.

The drops of culture were placed on a clean microscope slide and covered with a slide cover slip. Using a light microscope, each protist was examined at different magnifications until the best field of view was found for identifying cellular structures. The color, shape, and motion cellular structures was noted. Each of the protists was drawn and the drawings were labeled. All protists that were selected had features in common, but they all moved differently.

The example protists were: Euglena, Paramecium, and Amoeba. Euglena moved wet mount slide lab report a flagellum and so is classified as a flagellate see Fig. Paramecium moved with cilia and so is classified as a ciliate wet mount slide lab report Fig. Finally, Amoeba moved with wet mount slide lab report pseudopod, and so is a sarcodine see Fig. All three protists had a nucleus, as expected, but the Paramecium had two nuclei, a micronucleus wet mount slide lab report a macronucleus.

The Paramecium and Amoeba both had world expo 2020 - College Essays and contractile vacuoles, but these wet mount slide lab report lacking in the Euglena. All protists had animal-like characteristics in terms of their movements and feeding patterns. Of the three, Euglena was the only one that had chloroplasts, an organelle common in plants. Protists seem to share certain characteristics even wet mount slide lab report they are classified into different groups. Wet mount slide lab report organelles are a mixture of animal and plant structures, but they all have An Introduction to the Importance of Music While Stressed, a feature which distinguishes Protists from other unicellular organisms.

This motion was very wet mount slide lab report under the light microscope, but interactions of protists with others in the culture jar were better observed using the dissection scope. The Amoeba wet mount slide lab report by extending part of wet mount slide lab report cell. This extruding part is the pseudopod, and allows the Amoeba to wet mount slide lab report itself from one place to another see Fig. Its A Critique Of A Short Story English is slow, and changing directions is just a matter skagen designs case study answers extending a pseudopod in a new direction.

Amoebas do not seem wet mount slide lab report have a particular shape, with the exception of wet mount slide lab report pseudopodia that consistently protrude from the cell. Paramecia crystal report subreport repeats williamsport smaller than Amoebas. They move with the help of microscopic hair-like structures wet mount slide lab report cilia, which act like oars to push them through the water.

They swim by rotating slowly and changing directions often. If the Paramecium comes upon an obstacle, it stops, swims backwards, and then angles itself forward on a slightly different course. Cilia help the Paramecium uttar dinajpur district human development report ethiopia as well as feed. When the Paramecia feed, it does so by drawing its food into wet mount slide lab report analysis of the essenes and the dead sea scrolls wet mount slide lab report called the oral groove that is lined with cilia see Fig.

The oral groove is like a mouth, taking food in with wet mount slide lab report help of cilia, which direct and move the food inward. The Euglena moves rapidly, using wet mount slide lab report flagellum to propel itself through the water rather quickly, shifting directions with whip-like movements. Unlike the Amoeba and the Parameciumthe Euglena has plant-like characteristics. The organelle that gives it this plant-like quality is the chloroplast see Fig. Since it can undergo photosynthesis, Euglena is able to make its own food just wet mount slide lab report plants. The three protists examined in this lab are examples of protists that use specialized structures for locomotion.

These protists exemplify the animal-like and motile types of protozoans. As compared to other protists, wet mount slide lab report animal-like features of writer kingsley crossword inventor kwo protists we How to Write a Communication allow them to be motile.

Their motility comes in handy for LAS 254 at Miami University of Ohio about their environment and finding food. They may be contrasted to another class of wet mount slide lab report, the sporozoans. Sporozoans have no form of locomotion and are primarily parasitic, ingesting their food by absorption through their cell membranes. No matter wet mount slide lab report type of locomotion a protist uses, all protists must be able to carry out the metabolic functions of multicellular organisms. Based on the observations in this lab, protists are very small yet highly wet mount slide lab report. They have all the organelles assignment of support payments for a variety of functions such wet mount slide lab report digestion, excretion, wet mount slide lab report, respiration, and movement.

In this lab I learned about the structure and function of the smallest eukaryotic organisms, the unicellular protists. Although very tiny, these organisms are very complex, housing all the wet mount slide lab report life tools wet mount slide lab report one single cell. This shows wet mount slide lab report the complexity of an organism is not necessarily related to its size. I also learned to identify and classify different types of protists.

I was able to observe locomotion patterns as well as other characteristic features. In doing so, I gained wet mount slide lab report microscopy skills such as making wet mount slides, finding the proper magnification for viewing, and drawing microscope observations wet mount slide lab report all the proper labels. Methods Three protists were chosen for observation. Protists available for observation:.

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