
Concept explainers
a.
Find the intial quantity when
a.

Answer to Problem 78E
The quantity needed is
Explanation of Solution
Given:
It is given in the question that the quantity of radium present after t years is
Concept Used:
In this, use the concept of putting the value in the given function
Calculation:
The quantity of radium present after t years is given by the function:
At ,
Conclusion:
The Quantity is
b.
Calculate the quantity present after
b.

Answer to Problem 78E
The quantity needed is
Explanation of Solution
Given:
It is given in the question that the quantity of radium present after t years is
The time is
Concept Used:
In this, use the concept of putting the value in the given function
Calculation: The quantity of radium present after t years is given by the function:
At ,
Conclusion:
The Quantity is
c.
Draw the graph of the function in the interval
c.

Explanation of Solution
Given:
It is given in the question that the function is
Graph:
Interpretation:
The graph is shown above for the given function.
Simply,put the function in the graphic calculator,it gives the correct graph.And in the graph the curves linearly touch at the x axis at some certain points.And also the interval for
d.
Find in which time the quantity of radium be
d.

Answer to Problem 78E
The time at which
Explanation of Solution
Given:
It is given in the question that the function is
Concept Used:
In this, use the concept of putting the limit on the both side and tending both the side to
Calculation:
Since , the function is
Now,
Put limit to both sides,
The function is decreasing on
Conclusion:
The time at which
Chapter 3 Solutions
Precalculus with Limits: A Graphing Approach
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- R₂ = X2 2) slots per pole per phase = 3/3 1 B-180-60 msl Ka Sin (1) Isin () sin(30) Sin (30) اذا ميريد شرح الكتب بس 0 بالفراغ 3) Cos (30) 0.866 4) Rotating 5) Synchronous speed, 120 x 50 s = 1000-950 1000 Copper losses 5kw Rotor input 5 6) 1 0.05 G 50105 loo kw اذا ميريد شرح الكتب فقط look 7) rotov DC ined sove in peaper I need a detailed solution on paper please 064 2- A hot ball (D=15 cm ) is cooled by forced air T.-30°C, the rate of heat transfer from the ball is 460.86 W. Take for the air -0.025 Wim °C and Nu=144.89, find the ball surface temperature a) 300 °C 16 b) 327 °C c) 376 °C d) None か = 750 01arrow_forwardDon't do 14. Please solve 19arrow_forwardPlease solve 14 and 15arrow_forward
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