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Nate July

Nate J.

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Prabhat Tyagi verified

Numerade educator

Why is Antonie van Leeuwenhoek's work much better known than that of Zaccharias Janssen?

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Pritesh Ranjan verified

Numerade educator

A car tire makes contact with the ground on a rectangular area of $12 \mathrm{cm}$ by $18 \mathrm{cm} .$ If the car's mass is $925 \mathrm{kg},$ what pressure does the car exert on the ground as it rests on all four tires?

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Like a yo-yo Sam wraps a string around the outside of a 0.040 -m-radius 0.20 -kg solid cylinder and uses it like a yoyo (Figure $P 8.38 ) .$ When released, the cylinder accelerates downward at $(2 / 3) g$ . (a) Draw a force diagram for the cylinder and apply the translational form of Newton's second law to the cylinder in order to determine the force that the string exerts on the cylinder.(b) Determine the rotational inertia of the solid cylinder. (c) Apply the rotational form of Newton's second law and determine the cylinder's rotational acceleration. (d) Is your answer to part (c) consistent with the application of $a=r \alpha$ , which relates the cylinder's linear acceleration and its rotational acceleration? Explain.

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Prabhat Tyagi verified

Numerade educator

Identify the daughter nucleus when the following undergo alpha decay: (a) $_{90}^{228} \mathrm{Th}(\mathrm{b})_{83}^{212} \mathrm{Bi},$ and $(\mathrm{c})_{96}^{243} \mathrm{Cm}$

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David Mccaslin verified

Numerade educator

A challenging pen problem Two triangular pens are built against a barn. Two hundred meters of fencing are to be used for the three sides and the diagonal dividing fence (see figure). What dimensions maximize the area of the pen? (FIGURE CAN'T COPY)

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Christopher Dzorkpata verified

Numerade educator

(a) A bicycle generator rotates at 1875 rad/s, producing an 18.0 V peak emf. It has a 1.00 by 3.00 cm rectangular coil in a 0.640 T field. How many turns are in the coil? (b) Is this number of turns of wire practical for a 1.00 by 3.00 cm coil?

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What are the products of the following reactions?

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Umar Sohail Qureshi verified

Numerade educator

(II) A hair dryer draws 13.5 A when plugged into a 120-V line. ($a$) What is its resistance? ($b$) How much charge passes through it in 15 min? (Assume direct current.)

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Jennifer Hudspeth verified

Numerade educator

The amount of sunlight and rainfall affects the growing season of plants in different biomes Which of the following biomes is characterized by short growing seasons? a. savanna b. temperate grasslands c. arctic tundra d. tropical wet forest

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Consider a sample containing 5.00 moles of a monatomic ideal gas that is taken from state $\mathrm{A}$ to state $\mathrm{B}$ by the following two pathways: Pathway one: $$ \begin{array}{l}{P_{\mathrm{A}}=3.00 \mathrm{atm}} \\ {V_{\mathrm{A}}=15.0 \mathrm{L}}\end{array} \stackrel{1}{\longrightarrow} \begin{array}{l}{P_{\mathrm{D}}= 3.00 \mathrm{atm}} \\ {V_{\mathrm{D}}=55.0 \mathrm{L}}\end{array}\\ \quad\quad\quad\quad\quad\quad\stackrel{2}{\longrightarrow} \begin{array}{l}{P_{\mathrm{D}}=6.00 \mathrm{atm}} \\ {V_{\mathrm{D}}=20.0 \mathrm{L}}\end{array} $$ Pathway two: $$ \begin{array}{l}{P_{\mathrm{A}}=3.00 \mathrm{atm}} \\ {V_{\mathrm{A}}=15.0 \mathrm{L}}\end{array} \stackrel{3}{\longrightarrow} \begin{array}{l}{P_{\mathrm{D}}=6.00 \mathrm{atm}} \\ {V_{\mathrm{D}}=15.0 \mathrm{L}}\end{array}\\ \quad\quad\quad\quad\quad\quad\stackrel{4}{\longrightarrow} \begin{array}{l}{P_{\mathrm{D}}=6.00 \mathrm{atm}} \\ {V_{\mathrm{D}}=20.0 \mathrm{L}}\end{array} $$ For each step, assume that the external pressure is constant and equals the final pressure of the gas for that step. Calculate $q, w, \Delta E,$ and $\Delta H$ for each step in $\mathrm{kJ}$ , and calculate overall values for each pathway. Explain how the overall values for the two pathways illustrate that $\Delta E$ and $\Delta H$ are state functions, whereas $q$ and $w$ are path functions. Hint: In a more rigorous study of thermochemistry, it can be shown that for an ideal gas: $$ \begin{aligned} \Delta E &=\mathrm{nC}_{\mathrm{v}} \Delta T \text { and } \\ \Delta H &=\mathrm{nC}_{\mathrm{p}} \Delta T \end{aligned} $$ where $\mathrm{C}_{\mathrm{v}}$ is the molar heat capacity at constant volume and $\mathrm{C}_{\mathrm{p}}$ is the molar heat capacity at constant pressure. In addition, for a monotomic ideal gas, $\mathrm{C}_{\mathrm{v}}=\frac{3}{2} \mathrm{R}$ and $\mathrm{C}_{\mathrm{p}}=\frac{5}{2} \mathrm{R}$ .

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