Showing posts with label germinating radiated seeds. Show all posts
Showing posts with label germinating radiated seeds. Show all posts

Thursday, August 19, 2010

Works Cited List for Science Fair: Germinating Radiated Seeds

Works Cited List
Brady, Nyle C. The Nature and Properties of Soils/ Nyle C. Brady, Ray R. Weil. Upper Saddle River, N.J.: Prentice Hall, 1999.
Bushong, Stewart C. “Radiologic science for technologists: physics, biology, and protection.” Mosby-Year Book. 5th ed., 1993.
“Cancer and ‘risk-free’ radiation.” The Ecologist. March-April 1998: 54.
“FDA Approves Ionizing Radiation for Sprouting Seeds.” Journal of Environmental Health. March 2001: 38.
Fradin, Dennis B. Radiation/ by Dennis Fradin. Chicago: Childrens Press, 1987.
Gallowa, Carlton J. The Complete Microwave Oven Handbook. Prentice Hall, 1989.
“Genetic Engineering: Legal and Economic Disputes Over Seeds.” European Report 18 September 1999.
Koning, Ross. Seed Germination. 1994. 18 Dec. 2002.
McClure, Susan. Seeds and Propagation. New York: Workman Pub., 1957.
Parker, Thomas. “Seeds: ecology, biogeography, and evolution of dormancy and germination.” Ecology Sept. 1999.
Powell, Evan. “Microwave Oven.” World Book Encyclopedia. 2001 ed.
Seeds for Tomorrow. Videocassette. Allegro Productions Inc., 1998.
“Soil.” U*X*L Science. U*X*L, 1998. Reproduced in Discovering Collection. Farmington Hills, Mich.: Gale Group. October, 2001.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

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Works Cited List for Charles Dickens
William Shakespeare: An Annotated Bibliography
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds
A Sample Works Cited List for Charles Dickens
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Hypothesis for Science Fair: Germinating Radiated Seeds

If I expose radish seeds to different sized magnetic fields, then I expect the seeds exposed to the largest magnetic field to germinate the fastest, and to grow the tallest after a 10-day period of growth, because it is possible for the magnetic fields from the magnets to affect the ions of such biologically important processes as the hydrogen pump, which would then affect the production of ATP (energy for the plant to grow by), positively. This would speed the rate of germination of the seeds, and their growth as well. In addition, the magnetism could affect the conformity by which enzymes are made, altering their function in the plant, positively, and hence have a positive effect on the germination and growth of radish seeds.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

Procedure for Science Fair: Germinating Radiated Seeds

1. Retrieve a sheet of paper on which you can create a data table, and do so, making it appear similar to the one attached to the lab report.
2. Place the large magnet in the bottom of one of the planting containers.
3. Cover the magnet with soil, and plant 3 radish seeds approximately ½” deep in the soil.
4. Place the small magnet in the bottom of another planting basin, and repeat step 3.
5. Place the medium sized magnet in the bottom of a basin, and again follow the instructions as listed in step 3.
6. Continue this process until all magnets of different sizes have been buried under soil, and seeds planted in the soil above them.
7. Fill another pot with soil, and plant 3 radish seeds in it, again ½” deep in the soil (this is the control).
8. Water each pot with the same amount of (distilled) water every day, and be sure that each pot receives equal amounts of sunlight.
9. Record the height of the tallest plant in each pot (metric), every day following the planting, making note of which pot’s seeds germinate first.
10. After 10 days of recording the heights of the tallest plant in each planting basin, clean out each of the pots, keeping the magnets, and repeat steps 1-9 again.
11. Continue this process until 3 trials, at minimum, have been completed, but continue testing if time and resources allow.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

Abstract for Science Fair: Germinating Radiated Seeds

This science fair project was directed towards looking at whether or not magnetic fields have an effect on the germination and short-term growth of radish seeds. The limited resources currently available for this particular topic show positive signs as their result. First, I located and retrieved 5 different sizes of magnets (see Materials for specifications). I decided that this was a large enough number of varying sizes and then proceeded to place each magnet (S side up to eliminate any questions), in its own individual planting basin. I covered each magnet with dirt, and followed the remaining directions for planting the seeds in the soil. Upon finishing this task, I watered each plant, keeping the amount of water constant, and continued to do so once a day, for 10 days (this is the short-term growth part). Each day, I measured the tallest plant in each pot, making note of which seeds germinated first. Upon completion of the 10-day period, I began a new trial. I continued this process for 4 trials until my experiment was complete. Upon carefully analyzing the data, it appears as though the magnets had no affect on the germination and short-term growth of radish seeds, except in the case of the extra large magnet trials. The seeds in the plant basins containing the extra large magnets, I have determined, germinated as normal along with the control seeds, but upon germinating, grew substantially faster than the control, and upon completion of the 10-day period, yielded more growth than the control. On this basis, I have determined that magnetic fields (if strong enough), do in fact affect the short-term growth of radish seeds.

As shown on the graphs, and from the data table, the plant basins that contained the extra-large magnets in the bottom of them showed that they generally tend to germinate at about the same time as the control plants. However, the XL magnet plants, in the majority of the trials, grew faster, and overall, taller, than the control plants. Throughout the four trials, the planting basins containing the small magnets had a tendency to germinate later than the control, but still managed to grow fast, and even taller than the control plants in most cases. For the rest of the magnets, the seeds in their basins generally tended to germinate at about the same time as the control, and grow to about the same height as the control plants. In conclusion, the XL magnets that I tested did not commonly speed the rate of germination of the radish seeds, although they did have a positive effect on the growth and overall height of the plants in those particular basins, compared to the control. If the magnet is big enough (in this case, XL; see Materials above for details), then its magnetic field can positively affect the short-term growth of radish seeds.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

Materials for Science Fair: Germinating Radiated Seeds

1. 5 NdFeB magnetic discs: extra large: 1" dia X 1/4" thick; large: 3/4" dia X 1/8" thick; medium: 1/2" dia X 1/8" thick; small: 3/8" dia. x 1/16" Epoxy Coated; tiny: 1/8" dia X 1/16" thick.
2. Radish seeds: Cherry Bomb II (enough seeds for several trials)
3. Several small planting basins
4. Potting soil (enough for many plantings and several trials)
5. A ruler (metric)
6. Distilled water
7. Record book and writing implement for recording plant heights and making observations

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

Science Fair: Germinating Radiated Seeds

Question being addressed: Is the germination and growth of radish seeds affected by electromagnetic fields?
Hypothesis: If I expose radish seeds to different densities of electromagnetic radiation, then I expect those most exposed to die sooner, or not germinate at all, because radiation of unnatural amounts can rearrange and damage molecules and alter metabolism. A process of a chain-like manner will alter the organism’s electrical stability and effect cell polarization. The resulting disagreement within the cell may eventually lead to molecular changes in the cell, and the flow of substances in and out of them.
Problem: How is the germination rate and growth of radish seeds affected by electromagnetic fields as produced by a television?
Engineering goals: I plan on setting up a table or something of the sort around my television, and then setting up seeds different distances from the television along the table.
Description: I plan to arrange the above mentioned table appropriately, and lay out radish seeds on this table in different lengths from the source of electromagnetism; in this case a television. I will also set up some seeds to grow away from the source of electromagnetic fields, in a more natural, controlled environment. The method in which I will be germinating these seeds, is by moistening them, and growing them on paper towels. I will determine which seeds germinate the fastest by checking them everyday. I will determine which plants grow the largest over a period of time, by checking their mass each day using a scale. I intend to perform a number of trials to ensure the accuracy of my results.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

Bibliography:
“Electromagnetic Radiation.” Encyclopedia Britannica. 15th ed.
Rojansky, Vladimir. Electromagnetic Fields and Waves. Mineola, Ny: Dover, 1979.
Corson, Dale and Lorrain, Paul. Introduction to Electromagnetic Fields and Waves. San Francisco: W.H. Freeman and Company, 1962.

Works Cited List for Science Fair Project: Germinating Radiated Seeds

1. “Electromagnetic Radiation.” Encyclopedia Britannica. 15th ed.
“The essential features of all electromagnetic radiation may be summarized rather briefly. The electric and magnetic fields in an electromagnetic wave act in planes that are perpendicular to each other and to the direction of propagation. According to electromagnetic theory, a changing electric field is accompanied by a magnetic field of a prescribed strength, and a changing magnetic field is accompanied by an electric field.” Electromagnetic waves travel approximately 186,000 miles per second.

2. Macinnis, Peter. Science Fair Projects 12.22. May 1, 2000. June 21, 2003. . This is the source from which I obtained my project. Here I analyzed different ways of working the scientific method, and that the scientific method that you use will change depending on what area of science your project pertains to.

3. Rojansky, Vladimir. Electromagnetic Fields and Waves. Mineola, Ny: Dover, 1979. Two types of electric fields- electric fields associated with static charges: they are derivable from Coulomb’s inverse-square law and are called electrostatic fields; and electric fields associated with time-varying magnetic fields: they are derivable from Faraday’s law of induction, giving them the title of Faraday fields. “In metals, some of the electrons, called conduction electrons, are bound to the atomic nuclei only loosely and can be easily moved from place to place”(p 2).
This is the latest edition of the text I referenced, though it's a bit technical:

4. Corson, Dale and Lorrain, Paul. Introduction to Electromagnetic Fields and Waves. San Francisco: W.H. Freeman and Company, 1962.
“Now, on the atomic scale, all bodies contain electrons which move in orbits, thereby constituting currents in the usual sense, and which spin about an axis. These moving electrons produce magnetic fields which add to those produced by the conduction currents. For example, the electron spin is believed to be responsible for ferromagnetic effects” (p 259). I believe that enough of these magnetic fields put together from a couple of magnets could have a proportionate effect on the germination and growth of specific types of plants.

5. Steincamp, Jacqueline. Electromagnetic Radiation- The Damage and Reducing the Impact. 2 July, 2003 < http://www.nzine.co.nz/features/ emr2_updated.html> “Radiation of unnatural frequencies can rearrange and damage molecules and alter metabolism. A process of a chain-like reaction will firstly alter the organism's electrical stability and affect cell polarisation The resulting disharmony may eventually lead to changes in hormonal activity, affect the synthesis of genetic material, interfere with the flow of substances in and out of cells, and change the behaviour of cancer cells. A specific illness may then be diagnosed.” This report supports my hypothesis in the idea of accelerated metabolism in the plants exposed the electromagnetic fields. Jacqueline Steincamp is the Secretary of M.E./CFS Group (Canterbury) Inc.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

Monday, October 29, 2007

The Research Paper: Grand Summary

The Germination Rate of Radiated Seeds

For my science fair project this year, I decided to go with the botany theme. I found an experiment in a book titled, Science Fair Success with Plants, by Phyllis J. Perry. The experiment called for the radiating of radish seeds in a microwave before planting them to see what affect it had on the germination rate of the plants. I decided to slightly modify the experiment to make it a little more unique. I decided to use 3 types of seeds and microwave them for different amounts of time. If I expose different seeds to different amounts of radiation from a microwave, then I expect them to germinate earlier than seeds that weren’t exposed to the microwave radiation.

I hypothesize this because fats and oils don’t absorb microwaves as well as water does, meaning that the parts of the seeds that become the hottest during the microwaving are those that contain the most water molecules. Evidently, heating the water-containing portion of a seed slightly causes that seed to germinate faster. By doing this experiment, I hope to be able to prove that microwaving seeds before planting them does affect the germination rate in some way, rather than not at all. I first went out and purchased the 3 types of seeds, a container with about 48 individual planting cups in it, and some fresh potting soil. Then, I took some radish seeds and microwaved them for 15 seconds, then some more for 30 seconds, and then some more for 45 seconds on half power. I then planted the four sets of seeds (the three sets of microwaved ones and the set that wasn’t microwaved at all). After, I repeated this process 3 more times, giving me my three trials. I then labeled each plant according to what trial number it was, and how long it had been microwaved for. That completed the setup for the radish seeds. You can obviously see that this process took a while, but to make it even longer, I redid this entire process again with sunflower and tomato seeds.

After having all of the planting done, I then watered the plants, and continued to water them every day of the experiment, making sure to give each one relatively the same amount of water. Then, as the plants began to germinate, I used my Palm Pilot to record what day of the experiment it was (after planting), and how tall the plant had grown (in centimeters). I continued to do this until all the plants had sprouted, but then continued to record the plant heights for 1 or 2 additional days, out of curiosity to see if the growing rate of the plants was also affected by how much radiation exposure from the microwave they received. Please see my display board for pictures of this process as it was happening. See also my drawing for a better visual understanding.

The source from which I obtained my project idea offered a similar experiment, although in that experiment, only radish seeds were used, and each set of radish seeds was either not microwaved, or microwaved for 10, 20, 30, 40, 50, or 60 seconds. As you can see, by adding two other seed types into the mix, cutting out 3 extra microwaving times sort of balanced the project out a little more. The information uncovered in this experiment could someday be used to help farmers get their plants germinating faster and growing faster. With plants germinating and growing faster, farmers may be able to fit more crop cycles in a season. This would enable the production of more food for the general public to consume, and thus offering a legitimate and possible solution to world hunger.

As the plants began to sprout and grow taller and taller, I noticed a few interesting facts. On the reverse side of the seed packages, it said that the seeds should be expected to germinate in about 5-7 days, although the majority of the radish seeds germinated in about 4 days, and they had all germinated by the 5th day. An uncontrollable event that may have affected my results is the occasional overcast, although it would have affected the sunlight getting through to all of the plants, and not just some of them, so I have concluded that all the plants received the same amount of sunlight, and sunlight was not a factor here. By looking at the data sheets attached to this paper, you can see and understand a little better of what I will be talking about next; my results. In the case of the radish seeds, the plants that generally seemed to germinate the fastest, and grow the tallest overall, were those that hadn’t been microwaved, and those that had been microwaved for 45 seconds.

This is pretty much the opposite of what I hypothesized what would happen; that the plants that would germinate the soonest would be those seeds that had been microwaved for either 15 or 30 seconds. In the case of the sunflower seeds, a similar occurrence took place. Five sixths of the time, the seeds that weren’t microwaved at all, and those that had been microwaved for 45 seconds, germinated first, and in the end, grew to be the tallest overall. This was not the case however with the tomato seeds. My hypothesis was proved correct with the tomato seeds; the tomato seeds that had been microwaved for 15 and 30 seconds grew taller than any of the other plants on Day 6, when the majority of the seeds germinated, and grew the tallest overall in the end. If I were to do this experiment over again, I would incorporate into the experiment a wider variety of microwaving times to see if anything in between the already tested times has a faster germination rate or growth rate. Also, other experiments that could be done would be to grow some vegetables from radiated seeds, and test them for edibleness, ensuring that they are safe for the populace of this world to consume, without having to worry about any short-term or long-term side-effects.

I have thus been led to the conclusion that yes, microwaving seeds before planting them does effect the germination rate of the seeds, but the results are different from seed to seed as to how much faster than normal the microwaved seeds germinate. As I have just explained, the sunflower and radish seeds that were microwaved for 45 seconds tended to germinate the fastest, but the tomato seeds that were microwaved for 15 and 30 seconds tended to germinate the fastest. So, seeds vary as to how long they need to be microwaved for them to germinate the fastest, and although I haven’t found any yet, I’m sure that there’s a type or seed or two out there that when not microwaved at all, germinate the fastest.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

Works Cited

Perry, Phyllis J. Science Fair Success with Plants. New Jersey: Enslow Publishers Inc., 1999.

More of tracking progress in germinating radiated seeds - 3

Date Time (hours) Activities

10/15/02 1:00 Purchasing Materials. Today, I purchased the rest
of the seeds that are needed to perform my
experiment off of Burpee.com .

10/23/02 :45 I retyped my second logbook entry today. I added
more detail as to what I did.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

More of tracking progress in germinating radiated seeds

Date Time (Hours) Activities

9/19/02 2:00 Brainstorming- Today I spent time brainstorming
about the different types of soil that I could
use for my experiment.

9/29/02 3:30 Searching for resources for project. Today, I
spent time searching on the internet for radish seeds. I found some at burpee.com .

10/5/02 1:00 Purchasing resources for project. I went out
today and purchased 2 of the types of seeds
needed to perform my experiment.

10/15/02 1:00 Purchasing Materials. Today, I purchased the
rest of the seeds that are needed to perform my
experiment off of Burpee.com .

10/23/02 :45 I retyped my logbook today. I added more
detail as to what I did to achieve the results
listed above.

11/4/02 1:15 My time today was spent on brainstorming. I
was busy today thinking about when the best
time to start my project would be. I imagine I
should begin relatively soon.

11/14/02 1:45 Today, I went out and purchased the soil needed
to perform the experiments in order to complete my project.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

Some History

Date Time (Hours) Activities

11/27/02 2:00 Today, I began to microwave my seeds, beginning
with the sunflower seeds. The first batch went in
for 15 seconds, then the next for 30 seconds, then
the next for 45 seconds. I decided to cut out the
1 minute microwaving variable out of fear that
the seeds might explode. I wouldn’t want to lose
my microwave..
12/6/02 1:00 I began to brainstorm about how my display
board is going to look, and how I should put
things on it in a neat and orderly way, including
pictures and everything.
1/4/03 3:00 Today, I finished microwaving my seeds and I
planted them. I watered my seeds and recorded
data on them.
1/5/03- :30 Every day following the planting of my seeds, I
1/12/03 spent a half an hour on recording the height of my
plants until all of them had germinated.

Procedure for Germinating Radiated Seeds... An Experiment

The procedure for properly completing this project is not that difficult, but at times is a little time consuming. First, I went and purchased radish, sunflower, and tomato seeds. Then, I took one type of seed, and microwaved a few seeds for 15 seconds, 30 seconds, and 45 seconds. I then completed this another two times, giving me my three trials. After, I performed the same process for the other 2 types of seeds. After microwaving the seeds, I planted the microwaved seeds, and the non-microwaved seeds in soil, labeling each by their seed type, microwaved time, and trial number. Then, I watered the plants each day. When the first plant sprouted, I recorded which day it was on (after plating), and the plant height (cm). I did so for each plant until all of the plants had sprouted. During the process, I made several observations about the rate at which the plants were growing. After the sprouting process was complete, I compared the rate at which the plants sprouted, observing how some plants unexpectedly sprouted faster than others.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

Science Fair Project?

Will seeds germinate faster if they have been radiated in the microwave?

Hypothesis
If I expose different seeds to radiation from a microwave, then I expect them to sprout earlier than non-microwaved seeds, because fats and oils don’t absorb microwaves as well as water does. So the parts of the seeds that become the hottest are those that contain the most water molecules. Evidently, heating the water-containing portion of a seed slightly causes that seed to germinate faster.

Procedure
I will expose different seeds to different amounts of radiation from a microwave and plant them in soil. I will then observe the plants every day until the first one germinates and then I’ll record the time and date that the seeds germinated on. Next, I am going to compare the germination rates for different seeds that were exposed to different amounts of radiation from the microwave. Finally, I will determine the amount of radiation needed to cause seeds to germinate the fastest.
Bibliography
Phyllis J. Perry, Science Fair Success with Plants (Berkeley Heights, New Jersey: Enslow Publishers Inc., 1999), 36-38.
Helen Sullivan and Linda Sernoff, Research Reports
(Brookfield, Connecticut: The Millbrook Press, 1996), 54.
Robert P. Gwinn, Charles E. Swanson, and Philip W. Goetz, “Microwave,” also “Electronic Oven,” Encyclopedia Britannica, 15th ed.

A Conclusion to my Experiment about Germinating Radiated Seeds

After completing my project and analyzing the results, I have concluded that my hypothesis was partially correct. I hypothesized that the seeds that were microwaved for a short amount of time would germinate the fastest. This hypothesis proved to be true in the case of the tomato seeds. The tomato seeds that were microwaved for 15 and 30 seconds proved to be the ones that germinated the fastest, and grew the tallest overall. On the first day of germination, the tomato seeds generally grew to about 1½ to 2 centimeters, and generally grew to a total height of about 5 cm. This did not prove true with the radish and sunflower seeds though. The radish and sunflower seeds that weren’t microwaved at all, and those that were microwaved for 45 seconds, seemed in most cases to sprout the earliest, and to grow the tallest overall. The sunflower and radish seeds had a tendency to sprout early, and grow very tall at an extremely fast pace, growing up to 4 cm in one day! Yes, microwaving seeds before planting them does effect the germination rate of the seeds, but how long to microwave the seeds varies between different seed types. Every different type of seed requires a different amount of radiation exposure from a microwave in order to get the best results, and the earliest germinating seeds.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds

A Science Fair Project

Microwaving seeds to see if it affects their germination or growth.

An abstract of sorts:

I exposed sunflower, radish, and tomato seeds to different amounts of radiation from a microwave to see how it affects the germination rate of the seeds. I expected the seeds that were microwaved for short amounts of time to germinate earlier than seeds that were either microwaved for a longer amount of time, or seeds that weren’t microwaved at all. I then planted the seeds; unmicrowaved seeds, and seeds that were microwaved on half power for 15, 30, and 45 seconds. I did so for each type of seed, and for each seed type, I performed three trials to ensure accurate results. I watered the plants every day, and as soon as the first plant sprouted, I recorded the day and height of the plant. I did so for each subsequent plant, until all of the plants had sprouted. Next, I compared the germination rates for the different seeds that were exposed to different amounts of radiation from the microwave. This showed how my hypothesis was partially correct. I found out that the amount of radiation from a microwave needed to make seeds germinate the fastest depends on the type of seed it is. For the tomato seeds, the seeds that seemed to germinate the fastest were those that had been microwaved for either 15 or 30 seconds. The sunflower seeds that weren’t microwaved and those that had been microwaved for 45 seconds germinated the fastest. The radish seeds that were microwaved for 45 seconds germinated the fastest.

Other posts on germinating radiated seeds:

Abstract for Science Fair: Germinating Radiated Seeds
The Research Paper: Grand Summary
Materials for Science Fair: Germinating Radiated Seeds
Science Fair: Germinating Radiated Seeds
Hypothesis for Science Fair: Germinating Radiated Seeds
Plan for Science Fair Project: Germinating Radiated Seeds
Procedure for Science Fair: Germinating Radiated Seeds
Procedure for Germinating Radiated Seeds... An Experiment
More of tracking progress in germinating radiated seeds
More of tracking progress in germinating radiated seeds - 3
Some History on the Experiment
A Conclusion to my Experiment about Germinating Radiated Seeds
Works Cited List for Science Fair Project: Germinating Radiated Seeds
Works Cited List for Science
Works Cited List for Science Fair: Germinating Radiated Seeds