(a) Interpretation: The given number should be converted into standard scientific notation. 102.3 × 10 − 5 Concept Introduction: Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10. For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
(a) Interpretation: The given number should be converted into standard scientific notation. 102.3 × 10 − 5 Concept Introduction: Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10. For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
The given number should be converted into standard scientific notation.
102.3×10−5
Concept Introduction:
Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10.
For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
Expert Solution
Answer to Problem 121AP
1.023×10−2.
Explanation of Solution
The given number is 102.3×10−5, to write it in scientific notation, decimal is placed after first non-zero digit. After placing the decimal, there will be three digits after the decimal thus, power of 10 will be increased by + 3 and scientific notation will be 1.023×10−2 (-5+3 = -2).
Interpretation Introduction
(b)
Interpretation:
The given number should be converted into standard scientific notation.
32.03×10−3
Concept Introduction:
Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10.
For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
Expert Solution
Answer to Problem 121AP
3.203.
Explanation of Solution
The given number is 32.03×10−3, to write it in scientific notation, decimal is placed after first non-zero digit. After placing the decimal, thus, three units are added to the power of 10. The power of 10 becomes + 3 and scientific notation will be 3.203 as power of 10 is -3 and after placing the decimal then + 3 is added to the power of 10, thus power of 10 is equal to 0. Hence, 3.203 is the standard scientific notation.
Interpretation Introduction
(c)
Interpretation:
The given number should be converted into standard scientific notation.
59933×102
Concept Introduction:
Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10.
For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
Expert Solution
Answer to Problem 121AP
5.9933×106.
Explanation of Solution
The given number is 59933×102, to write it in scientific notation, decimal is placed after first non-zero digit. Thus, after placing the decimal, there will be four digits after the decimal, thus, power of 10 will be increased by four units, and overall power of 10 will be + 2+4 = 6. Thus, standard scientific notation is 5.9933×106.
Interpretation Introduction
(d)
Interpretation:
The given number should be converted into standard scientific notation.
599.33×104
Concept Introduction:
Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10.
For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
Expert Solution
Answer to Problem 121AP
5.9933×108.
Explanation of Solution
The given number is 599.33×104, to write it in scientific notation, decimal is placed after first non-zero digit. Thus, after placing the decimal, there will be four digits after the decimal, thus, power of 10 will be increased by four units, and overall power of 10 will be + 4+4 = 8. Thus, standard scientific notation is 5.9933×108.
Interpretation Introduction
(e)
Interpretation:
The given number should be converted into standard scientific notation.
5993.3×103
Concept Introduction:
Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10.
For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
Expert Solution
Answer to Problem 121AP
5.9933×107.
Explanation of Solution
The given number is 5993.3×103, to write it in scientific notation, decimal is placed after first non-zero digit. Thus, after placing the decimal, there will be four digits after the decimal, thus, power of 10 will be increased by four units, and overall power of 10 will be + 3+4 = 7. Thus, standard scientific notation is 5.9933×107.
Interpretation Introduction
(f)
Interpretation:
The given number should be converted into standard scientific notation.
2054×10−1
Concept Introduction:
Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10.
For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
Expert Solution
Answer to Problem 121AP
2.054×102.
Explanation of Solution
The given number is 2054×10−1, to write it in scientific notation, decimal is placed after first non-zero digit. After placing the decimal, there will be three digits after the decimal thus, power of 10 will be + 3 and thus, overall power of 10 will be + 3-1=+2. Hence, standard scientific notation is 2.054×102.
Interpretation Introduction
(g)
Interpretation:
The given number should be converted into standard scientific notation.
32, 000, 000×10−6
Concept Introduction:
Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10.
For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
Expert Solution
Answer to Problem 121AP
3.2×101.
Explanation of Solution
The given number is 32, 000, 000×10−6, to write it in scientific notation, decimal is placed after first non-zero digit. After placing the decimal, there will be seven digits after the decimal thus, power of 10 will be + 7 and thus, overall power of 10 will be + 7-6=+1. Hence, standard scientific notation is 3.2×101.
Interpretation Introduction
(h)
Interpretation:
The given number should be converted into standard scientific notation.
59.933×105
Concept Introduction:
Scientific notation for a number is written in such a way that large numbers are written in small decimal form which is then multiplied by the power of 10.
For numbers less than 1, the power of 10 in scientific notation has negative exponent and for numbers greater than 1, the power is either zero or has positive exponent.
Expert Solution
Answer to Problem 121AP
5.9933×109.
Explanation of Solution
The given number is 59.933×105, to write it in scientific notation, decimal is placed after first non-zero digit. Thus, after placing the decimal, there will be four digits after the decimal, thus, power of 10 will be increased by four units, and overall power of 10 will be + 4+5 = 9. Thus, standard scientific notation is 5.9933×109.
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b) Certain cyclic compounds are known to be conformationally similar to carbohydrates, although they are not
themselves carbohydrates. One example is Compound C shown below, which could be imagined as adopting
four possible conformations. In reality, however, only one of these is particularly stable. Circle the conformation
you expect to be the most stable, and provide an explanation to justify your choice. For your explanation to be
both convincing and correct, it must contain not only words, but also "cartoon" orbital drawings contrasting the
four structures.
Compound C
Possible conformations (circle one):
Дет
Lab Data
The distance entered is out of the expected range.
Check your calculations and conversion factors.
Verify your distance. Will the gas cloud be closer to the cotton ball with HCI or NH3?
Did you report your data to the correct number of significant figures?
- X
Experimental Set-up
HCI-NH3
NH3-HCI
Longer Tube
Time elapsed (min)
5 (exact)
5 (exact)
Distance between cotton balls (cm)
24.30
24.40
Distance to cloud (cm)
9.70
14.16
Distance traveled by HCI (cm)
9.70
9.80
Distance traveled by NH3 (cm)
14.60
14.50
Diffusion rate of HCI (cm/hr)
116
118
Diffusion rate of NH3 (cm/hr)
175.2
175.2
How to measure distance and calculate rate
For the titration of a divalent metal ion (M2+) with EDTA, the stoichiometry of the reaction is typically:
1:1 (one mole of EDTA per mole of metal ion)
2:1 (two moles of EDTA per mole of metal ion)
1:2 (one mole of EDTA per two moles of metal ion)
None of the above
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