ution was submerged in å 35°C. The number of gas bubbles released fro ch setup was observed and the results were recorded ninutes The data are summarized

Introductory Chemistry: A Foundation
9th Edition
ISBN:9781337399425
Author:Steven S. Zumdahl, Donald J. DeCoste
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Chapter15: Solutions
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Instructions- DO THE GRAPH LABELING THE NUMBERS AND LABELING THE POINTS AND PLEASE DO THEM ON THIS PICTURE NO HANDWRITTEN OR HAND DRAWN Pleasee help with this 2 people didn’t help with it can you help with this please??? and PLEASEE can you do this fast it’s night and I need to go to sleep thank you thank you so much?
e your answvers to questions 9 through3 on the information and diagrams below
and on your knowledge of biology
below were used to investigate
the effect of temperature on
celled organism). Each of two flasks containing equal amounts of
yeast-glucose solution was submerged in a water bath, one kept at 20°C
and one kept at 35°C. The number of gas bubbles released from the
glass tube in each setup was observed and the results were recorded
every 5 minutes for a period of 25 minutes. The data are summarized
in the table below.
-Water bath at 20°C
-Water bath at 35°C
Gas bubble
Gas bubble
Water
Water
Glass tube
Glass tube
Yeast-glucose solution
Yeast-glucose solution
Data Table
Time
Total Number of Bubbles Released
(minutes)
20°C
35°C
10
15
15
15
30
20
30
50
25
45
75
Directions (49-–51): Using the information in the data table, construct a line graph on
the grid on the next page, following the directions below,
Mark an appropriate scale on each axis.
10) Plot the data for the total number of bubbles released at 20°C on the grid on the next
page. Surround each point with a small circle and connect the points.
Example:
Transcribed Image Text:e your answvers to questions 9 through3 on the information and diagrams below and on your knowledge of biology below were used to investigate the effect of temperature on celled organism). Each of two flasks containing equal amounts of yeast-glucose solution was submerged in a water bath, one kept at 20°C and one kept at 35°C. The number of gas bubbles released from the glass tube in each setup was observed and the results were recorded every 5 minutes for a period of 25 minutes. The data are summarized in the table below. -Water bath at 20°C -Water bath at 35°C Gas bubble Gas bubble Water Water Glass tube Glass tube Yeast-glucose solution Yeast-glucose solution Data Table Time Total Number of Bubbles Released (minutes) 20°C 35°C 10 15 15 15 30 20 30 50 25 45 75 Directions (49-–51): Using the information in the data table, construct a line graph on the grid on the next page, following the directions below, Mark an appropriate scale on each axis. 10) Plot the data for the total number of bubbles released at 20°C on the grid on the next page. Surround each point with a small circle and connect the points. Example:
) Plot the data for the total number of bubbles released at 35°C an the grid. Surround
each point with a small triangle and connect the points.
Example: AA
The Effect of Temperature
on Respiration in Yeast
Key
Yoast respiration at 20°C
A Yeast respiration at 35°C
Time (minutes)
12 State one relationship between temperature and the rate of gas production in yeast.
Total Number of Bubbles Released
Transcribed Image Text:) Plot the data for the total number of bubbles released at 35°C an the grid. Surround each point with a small triangle and connect the points. Example: AA The Effect of Temperature on Respiration in Yeast Key Yoast respiration at 20°C A Yeast respiration at 35°C Time (minutes) 12 State one relationship between temperature and the rate of gas production in yeast. Total Number of Bubbles Released
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