Lab Report 1 - Osmosis - Biology Lab Notebook

 

potato lab report

Oct 01,  · In this lab experiment, we will use different sucrose concentration solutions (, , , , , mol/dm³) and compare it will distilled water solution as well to see how each solution affects the size of the potato and how high the diffusion of osmosis in each solute concentration will be in comparison to one another. VariablesAuthor: Yas Asghari. Sample Lab Report- Potato Osmosis - Free download as PDF File .pdf), Text File .txt) or read online for free. Scribd is the world's largest social reading and publishing site. Search Search. May 20,  · Osmosis lab report 1. -A F F E C T O F C O N C E N T R A T I O N O N T H ER A T E O F O S M O S I SPrepared for:BIOLOGYPrepared by:ABDULLRHMAN ZAKIDate:1/12/ Maintaining all variablesunchanged such as the pH, same size, and a constant harlanpds.gq time taken for all potato cylinders will be 30 harlanpds.gqesis:I predict that if.


Osmosis Potato Lab Report Biology Essays


Involved in this process are hypotonic, hypertonic and isotonic solutions, potato lab report. A hypotonic solution is one with a lower osmotic pressure, indicating that the net movement of water moves into the said solution whereas a hypertonic solution is one with a higher osmotic pressure, thus potato lab report net movement of water will be leaving the hypertonic solution.

Lastly, an isotonic solution entails no net movement of water across a semi-permeable membrane as the two substances involved display osmotic equilibrium. AIM To observe the effect of solutions different levels of NaCl concentration on potatoes, considering the process of osmosis. Thus, potato lab report, we can state that there appears to be a negative correlation between NaCl concentration and the mass and length of the potato strips, potato lab report, clearly evident in the above graph which shows an exponential decrease in both mass and length.

This occurrence can be explained through the process of osmosis. As mentioned in the introduction, a hypertonic solution is one with potato lab report osmotic pressure meaning that the net movement of water leaves the solution. Since the solution it is submerged in is higher in concentration in water molecules, or hypertonic, the water molecules will diffuse into the area of lower H2O-concentration the potato strip in order potato lab report achieve equilibrium.

Alternatively, the decrease potato lab report mass and length in the potato strips submerged in highly concentrated NaCl solutions can be explained by its immersion in a hypotonic solution, potato lab report. Hypertonic solutions, as mentioned. Therefore, as NaCl solution is less concentrated in H2O molecules than the potato strips, the decrease in mass and length and loss of turgidity results from the net movement of water leaving the potato strips, which is higher in osmotic pressure, and diffusing into the solution.

Nevertheless, there are several possible sources of error that could have greatly or negligibly affected the outcome of the experiment. First, we must note the varying external factors resulting from an uncontrolled environment the biology classroom.

Primarily, these would include varying temperatures and humidity which could potentially affect the rate of osmosis as increased temperature results in increased diffusion while increased humidity results in an increased number of water molecules. Secondly, we must note the human errors involved, for example, miscalculations in experimental preparations. These would include the miscalculation of solutions leading to an inaccurate concentration of NaCl as well as the possibility of impurities in the NaCl concoction in the first place while imprecise cutting of the potato strips couldve affected the surface area and thus the rate of osmosis.

This leads us to the errors resulting from variances in the substances used. As already discussed previously, differences in surface area of each potato strip caused by imprecise cutting as well as the marks lines and notches imprinted wouldve affected the rate of osmosis while the concentration gradient between each potato strip is likely to differ as well.

This stems from the differences in water content of each potato, potato lab report, as, for example, a potato with high water concentration in highly concentrated NaCl solution would have a faster rate of erosion. Further affecting factors could potato lab report barriers to diffusion such as the size of pores which would also determine the rate of osmosis.

All the mentioned errors above hold the possibility of skewing the data. Subsequently, such errors could have an effect on the reliability of the results. The level of accuracy which has been used throughout this investigation would come into question as a combination of these errors would not permit such precision.

Values of percentage change have been taken at two decimal places corresponding with the actual values of mass and length, however, this could be seen as far too precise. A better option would have been to take percentage change as whole numbers or at one decimal place. Nevertheless, we attempted to reduce the potential errors through several measures.

With surface area, a cork borer was used in order to uniform the size of the potato strips while the varying concentration gradients were controlled through the completion of several trials three trials with three potatoes in order to limit error. Furthermore, to control the effects of the external environment, foil was secured over the beaker containing the submerged potato strips. However, if we refer to the graph, potato lab report, we can see the minimum and maximum spread for each data-point is generally close-set while the R2 value, which calculates the spread of the datapoints from the line of best fit, are both relatively high both around 0, potato lab report.

This demonstrable trend indicates a limiting of the amount of error, and thus fairly reliable results despite possible errors. Overall, the results ultimately seem reliable although it mightve been even more reliable by reducing the level of precision decimal places when recording it. Ultimately, potential improvements will stem from attempting to reduce the amount of error in this investigation, particularly involving controlling the external environment and the miscalculations.

To control potato lab report external affecting factors, the solution containing the potato strips can be kept overnight instead in a controlled environment with consistent temperatures and humidity.

Limiting the human error would be difficult and time-consuming as this would involve. Finally, nothing can be done to uniform the response of the materials used, thus the completion of even more trials limits the potential error and allows the formation of generalizations. Despite the improvements proposed, those relating to limiting human error and completing more trials may prove to be futile as they are not only time-consuming, but the demonstrable trends resulting from this experiment indicate that no further improvements are necessary to reach potato lab report desired conclusion.

Having established that there is no real need to pursue drastic improvements for the initial experiment, we can now proceed to discuss possible extensions to the investigation. While we already know the results of osmosis on a potato, we may now wish to better understand it. This can be done by recording the progress of the potatos transformation either a over a period of time perhaps 24 hours or b until it has reached the point of equilibrium.

The mapping of this progress would involve the periodic removal of the samples in order to measure its mass and length, after which it can be compiled into a graph to chart the transformation under osmosis. Alternatively, potato lab report, we could compare the progress of a potato to another type of vegetable or potato lab report in order to ascertain water content of each.

Lastly, the submerged potato strips may be subjected to different kinds of environment, particularly, varying humidity and temperature, without the protection of a foil cap.

This would reveal how much of an impact environmental factors would have on the osmotic process and how would the effects manifest.

In relation to the question of the sailor, this could represent the life-span one would expect when trapped in certain climates. Read Free For 30 Days. Potato lab report Lab Report- Potato Osmosis. Uploaded by Carla Reyes. Flag for inappropriate content. Related titles. Carousel Previous Carousel Next. Jump to Page. Search inside document. Related Searches Osmosis potato Osmosis. Momina Amjad. Asi Bts. Virninda Yusfrisha. Jim Goetz. Cxc Sba. Catherine Marie Tucker. Calvin Hon, potato lab report.

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Potato Osmosis Lab Report | Osmosis in Potato Cells Lab Report :: Custom Papers Writing Help

 

potato lab report

 

Osmosis Potato Lab Report Biology Paper If the two solutions are of equal concentrations, they will be isotonic. If the concentrations are unequal, the solution with the higher concentration is hypersonic, and the solution with the lower concentration is harlanpds.gq: Osmosis Potato Lab Report Biology. Osmosis potato lab report - put out a little time and money to get the paper you could not even imagine Dissertations and essays at most. Two illustrations involving salt water demonstrate how osmosis can produce disastrous effects in living things. Diffusion Osmosis Lab Report. Lab reports are an essential part of all laboratory courses and usually a significant part of your grade. If your instructor gives you an outline for how to write a lab report, use that. Some instructors require the lab report be included in a lab notebook, while others will request a separate report. Here's a format for a lab report you can.