A baseball is thrown from the roof of 20.8m-tall building with an initial velocity of magnitude 10.6m/sand directed at an angle of 57.3^\circabove the horizontal.A. What is the speed of the ball just before it strikes the ground? Use energy methods and ignore air resistance.B. What is the answer for part (A) if the initial velocity is at an angle of 57.3^\circbelow the horizontal?C. If the effects of air resistance are included, will part (A) or (B) give the higher speed?- part A will give the higher speed- part B will give the higher speed

Answers

Answer 1

a) The speed with which it strikes the ground is 22.212 m/s.

b) It is not influenced by angle and simply relies on mechanical energy conservation.

c) None of the situation would give the higher speed.

Given that,

The height from which the baseball is thrown = 20.8 m

Initial velocity v₀ = 10.6 m/s

Angle = 57.3°

Initially, the potential energy of the ball = m × g × h = m × 9.8 × 20.8 = 204.82 m J

Initial velocity contains two components, vx and vy.

vx = 10.6 cos 57.3° = 5.73

vy = 10.6 sin 57.3° = 8.92

The x component remains constant through the whole motion, so we need to consider the y component only, as the x component will get cancelled as it is same everywhere.

Initially the kinetic energy is,

K.E i = 1/2 m (vy)² = 1/2 m × 8.92² = 39.78 m

Final potential energy = m × g ×h = m × 9.8 ×h

At the height the ball reached, the final kinetic energy is zero.

The conservation of mechanical energy enables us to know that,

P.E i + K.E i = P.E f + K.E f

204.82 m + 39.78 m = m × 9.8 ×h

244.6 = 9.8 ×h

h = 24.96 metres

Now, the potential energy at the highest point is,

P.E f = m × 9.8 × 24.96 = 244.61 m J

Initial kinetic energy was zero, because of the zero speed at the top.

Final kinetic energy will be,

K.E f = 1/2 m × v²

244.61 m = 1/2 m × v²

v² = 244.61 × 2

v = 22.12 m/s

b) If the ball would have been thrown at an angle of 57.3°, below the horizontal, then also the final velocity would be 22.12 m/s. It is not influenced by angle and simply relies on mechanical energy conservation.

c) The air resistance will produce a decrease in the final speed.

We know that friction is a non conservative force and our system will become a dissipative system as the total mechanical energy would not be conserved.

Air friction will cause a decrease in speed. None of the situation would give the higher speed.

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Related Questions

study a block with a mass of 1.5 kg is set atop a vertical spring compressed 0.75 m. when the spring is released, the block flies upward and achieves a speed of 2.5 m/s at a height of 1.4m. what is the spring constant of the spring?

Answers

The spring constant of the spring to which a block is attached and the spring is compressed initially and then released is 16.67 N/m.

According to Hooke's Law,

When a spring is stretched, the force applied is proportional to the lengthening from the equilibrium length.

The formula k = -F/x, where k is the spring constant, can be used to get the spring constant. F stands for force, and x is for the variation in spring length.

As per the Law of Conservation of Energy

Energy follows the principle of conservation when it is moved from one form to another.

So, initial energy = final energy

=> 1/2 * k * x² = 1/2 * m * v²

where k is the spring constant

Compression of the spring = 0.75 m

m = Mass of the block = 1.5 kg

v = velocity of the block = 2.5 m/s

So, from the above expression

1/2* k * (0.75)² = 1/2* (1.5)* (2.5)²

k * (0.75)² = (1.5)* (2.5)²

k = [(1.5)* (2.5)²]/(0.75)² = 9.375/0.5625 = 16.67 N/m

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a 1.6-m-tall woman stands 2.0 m in front of a convex funhouse mirror with a focal length of 2/3 m.

Answers

A frame of reference should be created to characterize the situation. To determine the position of objects, we often use the earth as a reference point.

A frame of reference should be created to characterize the situation. To determine the position of objects, we often use the earth as a reference point. It is important to remember that in this situation you should almost always use a moving reference rather than a static one.

View objects as if they were on a number line to understand their position in a straight line. Any position along the number line is allowed for both positive and negative numbers. It is common to place the initial position of the object at the zero mark.

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what force must be exerted on the master cylinder of a hydraulic lift to support the weight of a 2500 kg car (a big car) resting on the slave cylinder? the master cylinder has a 1.93 cm diameter, while the slave's is 24.9 cm.

Answers

The required force exerted on the master cylinder of a hydraulic lift to support the weight of a 2500-kg car is 147 Newton.

The hydraulic pressure on both cylinders are the same.

F₁ / A₁ = F₂ / A₂

Where:

F₁  = force on master cylinder

F₂ = force on slave cylinder

A₁ = cross section area of master cylinder

A₂ = cross section area of slave cylinder

In the given problem, the force acted on the slave cylinder is equal to the weight of the car. Hence,

F₂ = 2500 x 9.8 = 24,500 N

A₁ = 1/4 x 3.14 x 1.93² = 2.92 cm²

A₂ = 1/4 x 3.14 x 24.9² = 486.7 cm²

Plug these parameters into the equation:

F₁ / 2.92 = 24,500 / 486.7

F₁ = (24,500 / 486.7) x 2.92 = 147 Newton

Hence, the required force is 147 Newton

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a system releases 425 kj og heat and does 307 kj of work on the surroundings in the process. what is the change in the internal energy of the system

Answers

A system produces 307 kj of work for the environment while releasing 425 kj of heat. The system's internal energy changes as 118kj

According to the first law of thermodynamics, heat is a form of energy, and consequently, thermodynamic processes are governed by the idea of conservation of energy. Heat energy cannot be created or destroyed, so it makes sense.

Given that heat released by system (Q) = -425kj as heat is released

Work done by the system (W) = -307kj

internal energy change in the system is ΔU

ΔU = Q + W = -425 + (-307) = -732kj

Because we know from conservation of energy Q>0 and W<0

There is decrease in internal energy

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a hunter aims directly at a target (on the same level) 120.0 m away. if the bullet leaves the gun at a speed of 250m/s, by how much will it miss the target?

Answers

The distance the bullet will miss the target is 1.13 m.

The initial velocity of the bullet = 250 m/s

Distance of the target = 120 m

Calculating the time of motion -

= Distance of the target/ Initial velocity of the bullet

= 120 / 250

= 0.48 s

During this time the bullet is under gravitational pull. It is the force that two objects with mass exert on each other. This force is a fundamental force of nature and is responsible for the attraction between objects with mass. The strength of the gravitational pull between two objects is determined by their masses and the distance between them.

Thus, calculating the distance it will miss the target using the equation -

Y = V₀y + ¹/₂gt²

where;

V₀y is the initial vertical velocity = 0

Therefore, substituting the values -

Y = 0+ ¹/₂gt²

= ¹/₂(9.8)(0.48)²

= = ¹/₂(9.8)(0.2304)

= 1.13

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PLS ANSWER!!!
When loads (in this case, flashlight bulbs) are connected in parallel to a cell, how does the potential difference across each load compare with the potential difference across the cell?

Answers

The potential difference across each light bulb would always be the same as the potential difference across the battery cells.

What is potential difference?

Potential difference is described as the amount of work energy required to move an electric charge from one point to another and can also be the difference in electric potential between two points.

Two light bulbs in a simple parallel circuit each will enjoy the full voltage of the battery. Hence, the reason why the bulbs in the parallel circuit will be brighter than those in the series circuit.

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how long must a simple pendulum be if it is to make exactly one swing per two seconds? (that is, one complete oscillation takes exactly 4.0 s .)

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8T s long must a simple pendulum be if it is to make exactly one swing per two seconds (that is, one complete oscillation takes exactly 4.0 s .)

The recurrent or periodic change of a quantity around a central value (often an equilibrium point) or between two or more different states is known as oscillation. Alternating current and a swinging pendulum are two common examples of oscillation. In physics, oscillations can be used to simulate complex interactions like those between atoms. The beating of the human heart (for circulation), business cycles in economics, predator-prey population cycles in ecology, geothermal geysers in geology, vibration of strings in guitars and other string instruments, periodic firing of nerve cells in the brain, and the periodic swelling of Cepheid variable stars in astronomy are just a few examples of dynamic systems that oscillate outside of mechanical systems. When the spring is static, the system is in an equilibrium state. In the event that the system deviates from equilibrium, there is a net restoring force acting on the mass that tends to return it to equilibrium. The mass has gained momentum as a result of being moved back to the equilibrium point, which keeps it moving past it and creates a fresh restoring force in the opposite direction.

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the number of what atomic particle varies between different isotopes of the same element?

Answers

Even among atoms of the same element, the number of neutrons might vary. Atoms of the same element that have different numbers of neutrons but the same number of protons are called isotopes.

Between isotopes of the same element, what changes?

The only difference between identical chemical element atoms of various isotopes is the amount of neutrons in the nucleus.

What quantity differs between isotopes?

Isotopes are variations in the mass number, "A," of an element's atoms that share the same number of protons (atomic number, "Z") but a different number of neutrons. Consider hydrogen as an example. It has the isotopes 1H, 2H, and 3H in its naturally occurring form.

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Find the slope in the x-direction at the point P(0,2,f(0,2)) on thegraph of f when f(x,y)=2(2x+y)e-xy

Answers

-4 is the slope in the x-direction at the point (0,2) on the given graph.

what is Slope of a given curve?

A curve's slope at a given point is the same as the slope of the straight line that is perpendicular to the curve there.

To find the slope along x direction is given by:

slope along x-direction= δ(f(x))/δ(x)

=> δ([tex]2(2x+y)e^-^x^y[/tex])/δ(x)

=> 4[tex]e^-^x^y[/tex] - [tex]2y(2x+y)e^-^x^y[/tex]

we have to find the value of slope at point (0,2)

so the value of x=0 and y=2 in the above equation we get:

=> 4 [tex]e^2^*^0 -2*2(2*0+2)*e^2^*^0[/tex]

=> 4 - 4( 0 +2) *1

=>4-8

=>-4

so the slope along x-axis at point (0,2) is -4.

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assume the support at b is a roller. point c is located just to the right of the f = 8-kip load.

Answers

The internal normal force, shear force, and moment at point C are as bellow,

normal force =0

shear force at C= -1 kip

and moment at C=56 kip- ft

As per the details share in the above question are as bellow,

The support at b is a roller.

Point c is located just to the right of the f = 8-kip load.

From equilibrium equation we get,

[tex]& \Sigma M_A=0[/tex]

8 X 8 -40 -RB X 24=0

Rb=1 kip

Also,

[tex]& \sum F_y=0 \\& R_A-8+R_B=0[/tex]

RA= 7 kip

So, the normal Force Nc,

As there is no axial force present,

Nc=0

That is normal point at C.

Further the shearing force Vc,

Vc=RA-F

Substitute the value in above equation we get,

Vc=7-8=-1

Vc=-1 kip

Now the moment at Mc,

Mc=Ra x 8

Substitute the value in above equation we get,

Mc= 7 x 8

Mc= 56 kip- ft

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Note :- The correct question would be,

Assume the support at B is a roller. Point C is located just to the right of the F = 8-kip load. Determine the internal normal force, shear force, and moment at point C.

How do you reduce a camping tent' heat in DIY Method Pl do not cam me with dum replie!

Answers

Camping - Even on sweltering summer days, camping is a delightful outdoor activity.

However, if it's hot outside, your tent may become very uncomfortable. Thankfully, there are ways to keep your tent cool. By making the most of your supplies, setting up your tent in the ideal location, and using a tarp or umbrella to block off the sun, you may avoid the heat.

Three methods to keep the tent cool:

1. Bring your cooler of ice into the tent.

2. Use a battery-operated fan to circulate the air.

3. Open your tent’s door and vents if it has any.

4. Sleep on top of your sleeping bag to stay cool.

5. Remove the rain fly if the weather forecast doesn’t predict rain.

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p20. a simple harmonic oscillator takes 12.0 s to undergo 5.00 complete vibrations. find (a) the period of its motion, (b) the frequency in hertz, and (c) the angular frequency in radians per second.

Answers

A basic simple harmonic oscillator completes 5 full vibrations in 12.0 seconds. Its motion has a period of 2.40 seconds, a frequency of 0.417 Hz, and an angular frequency of 2.62 rad/s.

We may calculate the period and, thus, the frequency by measuring the length of one full oscillation. The motion's frequency, f = 1/T = /2, determines how many complete oscillations occur in a given amount of time.

(a)Given that time taken for an oscillator to undergo 5 complete vibrations (t) = 12s

Period = time taken/total number of vibrations(T) = 12/5 = 2.40s

(b) frequency is inversely proportional to time. So f = 1/T

f = 1/2.40 = 0.417Hz

(c) the angular frequency is calculated as  ω=2πf

ω=2x(3.14)x0.417 = 2.62 rad/s

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need helping getting the answer

Answers

Gravity because gravity is the force that attracts something to the center of the earth, so it keeps things in orbit around it

two people are in a boat that is capable of a max speed of 5 km per hour in still water, and wish to cross a river 1 km wide to a point directly across starting point. if the speed of the water in the river is 5 km per hour, how much time is required for the crossing

Answers

It will take the boat an infinite amount of time to cross the river, as it is not moving relative to the water.

To determine the time required for the crossing, you can use the formula:

time = distance / speed

In this case, the distance is 1 km and the speed is the speed of the boat relative to the water. Since the speed of the water in the river is 5 km per hour and the boat is capable of a maximum speed of 5 km per hour in still water, the speed of the boat relative to the water is zero.

Therefore, the time required for the crossing is:

time = 1 km / 0 km/hour = 0 hours

This means that it will take the boat an infinite amount of time to cross the river, as it is not moving relative to the water. To make the crossing, the boat will need to have a speed greater than zero relative to the water. This can be achieved by either increasing the speed of the boat or by decreasing the speed of the water relative to the boat, for example by rowing against the current.

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discuss the measurement in detail and explain how you could use the search coil oscilloscope to measure the current passing through the large coil.

Answers

There are two methods of measurement of current with an oscilloscope. They are

A) Measure the voltage drop across a shunt resistor and

B) Measure the current with a current probe

A) If a current sense resistor is designed into the DC power supply, this is the most convenient approach.

Measuring the voltage drop across the sense resistor with an active differential probe will provide good results as long as the common mode signal is within the probe's specified operating range and the voltage drop is large enough. However, using a differential probe on low level signals requires some attention to the noise reduction in the measurement system.

B) Current flow through a conductor causes an electromagnetic flux field to form around the conductor. Current probes are designed to sense the strength of this field and convert it to a corresponding voltage for measurement by an oscilloscope.

This allows you to view and analyse current waveforms with an oscilloscope. When used in combination with an oscilloscope's voltage measurement capabilities, current probes also allow you to make a wide variety of current measurements.

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a 1.0-kg object moving in a certain direction has a kinetic energy of 4.0 j. it hits a wall and comes back with half its original speed. what is the kinetic energy of this object at this point?

Answers

The calculated answer is 2 m/s. The displacement that an object or particle experiences with respect to time is expressed vectorially as velocity.

The energy that drives motion is known as kinetic energy (KE). Kinetic energy is the force that drives motion. The mass and speed of an object moving determine how much kinetic energy it has. The formula for calculating it is

KE = 1 2 mass velocity 2.

The relationship between kinetic energy and an object's mass and square of its velocity is direct:

K.E. = 1/2 m v2.

The kinetic energy is measured in kilograms-meters squared per second squared if the mass is measured in kilograms and the velocity is measured in meters per second.

4= 1*v²

=2 m/s

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which of these galaxies is likely to be oldest? (a) a galaxy in the local group (b) a galaxy observed at a distance of 5 billion light-years (c) a galaxy observed at a distance of 10 billion light-years

Answers

The correct option is (a) i.e. a galaxy in the local group, galaxies is likely to be oldest.

A galaxy is a collection of stars, stellar remains, interstellar gas, dust, and dark matter that are gravitationally bonded together. The name comes from the Greek word galaxias, which means "milky" and refers to the Milky Way galaxy, which houses the Solar System. Galaxies, which contain an average of 100 million stars, range in size from dwarfs, which contain fewer than 100 million stars, to supergiants, which contain 100 trillion stars, all of which orbit the galaxy's center of mass. Only a small percentage of the mass in a normal galaxy is visible in the form of stars and nebulae; the majority of the galaxy's mass is dark matter. Supermassive black holes are a typical component of galaxy centers. According on their optical shape, galaxies are classified as elliptical, spiral, or irregular. It is believed that the nuclei of many of them contain supermassive black holes. Sagittarius A*, the name of the Milky Way's primary black hole, is four million times more massive than the Sun. GN-z11 is the oldest and furthest away galaxy as of March 2016. It can be seen as having existed only 400 million years after the Big Bang and is located 32 billion light-years away from Earth.

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rate of turn can be increased and radius of turn decreased by a. decreasing airspeed and increasing the bank. b. increasing airspeed and increasing the bank. c. decreasing airspeed and shallowing the bank.

Answers

The rate of turn can be increased and the radius of turn decreased by decreasing airspeed and shallowing the bank. Option C.

Turn radius depends on both airspeed and bank angle. The turning radius at any bank angle is directly proportional to the airspeed squared. Doubling the airspeed quadruples the turning radius, and trebling the airspeed quadruples the radius.

During a constant banked turn, increasing airspeed will decrease turn speed and increase turn radius. Airplanes fly fast, but the distance they fly is faster than their speed. As a result, it takes longer to complete a turn and slows down the turn.

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determine the force in member cg. the force is positive if in tension, negative if in compression.

Answers

The force in member CG will be -3 kN

Solving for 3 support reactions may be done using conditions for equilibrium for the complete truss.

At a joint, forces in opposing members that connect in two straight lines are equal. When a load is aligned with a third member, the forces in two opposing members are equal.

A system must meet the three equations of equilibrium, Sum Fx = 0, Sum Fy = 0, and Sum M = 0, in order to be in equilibrium. Start with the equations for the sum of the forces. Dividing the diagonal forces into their component parts would be the most straightforward technique to solve these force systems.

If R_A be the vertical reaction generated at A.

Taking MF=0

[tex]& \Rightarrow R_A \times 5 \times 2.7-10 \times 3 \times 2.7-16 \times 2 \times 2.7=0 . \\& \Rightarrow R_A=12.4 kN .[/tex]

Now, cutting the truss by Section XX unto two for analysing the equilibrium of the lift side

for equilibrium

[tex]$$\begin{aligned}& \sum V=0 \\& \Rightarrow R_A-10-F_{CG} \times \cos \theta=0\end{aligned}$$[/tex]

where F_{CE}= force in CG and is assumed tensile

So, the value of the angle of cosine will be:

[tex]$$\cos \theta=\frac{3.6}{\sqrt{3.6^2+2.7^2}}=\frac{3.6}{4.5}=0.8 \text {. }$$[/tex]

[tex]\Rightarrow \quad 12.4-10-F_{69} \times 0.8=0\\\\\Rightarrow F_{c g}=\frac{-2.4}{0.8}=-3 \mathrm{kN}\\\\\Rightarrow F_{CG=}=-3 \mathrm{kN} \quad\left\{\begin{array}{l}\text { negative means } \\ \text { compression }\end{array}\right\}[/tex]

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The required diagram is attached below:

how wide is a single slit that produces its first minimum for 633-nm light at an angle of 28.0º?

Answers

1.35µm is the width of single slit that produces its first minimum for 633-nm light at an angle of 28.0º.

Light encounters a number of phenomena while traveling through air, including interference, refraction, reflection, and diffraction. Diffraction of light happens when light strikes an obstruction.

When light passes through a single slit whose width (w) is on the order of the light's wavelength, we can witness single slit diffraction. The screen's diffraction pattern will be located L >> w distant from the slit. The tilt affects the intensity.

As we known that

  D sinx= mλ

where

D is width of single slit

x is angle of diffraction

λ is the wavelength of the light

m is the order of diffraction

After put all the values in above equation we get

D sin 28° =(633 *[tex]10^{-9}[/tex] m)

D =1.35µm

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On route to senior prom, a couple was cut off by another car. The couple traveling 21 m/s slammed on the breaks and slowed to a speed of 8 m/s in a time of 1.4 seconds. What was the couple’s acceleration?
1) -9.3 m/s^2
2) 9.3 m/s^2
3) 18 m/s^2
4) -18 m/s^2
5) answer not shown

Answers

Answer: (1) a = -9.3 m/s^2

Explanation:

a = Δv/Δt

a = (8 m/s - 21 m/s)/(1.4 s)

a = -9.3 m/s^2

how much heat transfer (in j) occurs from a system if its internal energy decreased by 300 j while it was doing 16.0 j of work? (enter the magnitude.)

Answers

The system released 134 J of energy into the surrounding while doing 16 J of work.

What is energy ?

The ability to exert a force that causes an item to move is what is meant by the definition of energy as the "power to accomplish work."

We use thermodynamics principles in this situation. There are already obtained relationships for intense properties like internal energy (U), heat transfer (Q), and work (W) that were based on differential equations. The formula is

ΔU = Q + W

But since these factors depend on their signs, we must remember to take them into account. Van Ness, Smith, and Abbott assert that declining has a negative sign convention. If work is being done ON the system, the sign is positive; however, if work is being done BY the system, the sign is negative. in this instance,

ΔU = -150 J

W = -16 J

Then , we can determine Q as follows

- 150 J = Q - 16 J

Q = - 134 J

Thus 134 J of heat of released by the system into the surroundings.

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under what conditions may the lumped capacitance method be used to predict the transient response of a solid to a change in its thermal environment?

Answers

If Bi < 1, it means that there are very few temperature variations inside the solid. These conditions may the lumped capacitance method be used to predict the transient response of a solid to a change in its thermal environment

Under what condition is the lumped capacitance method valid?

A lumped capacitance study is often regarded as legitimate if the Biot number of the heat transfer scenario is less than 0.1.

What is the necessary condition that must be satisfied in order to apply the lumped system analysis?

The conduction heat resistance is negligible because lumped system analysis assumes a homogeneous temperature distribution throughout the body. As a result, when Bi = 0, the lumped system analysis is accurate. For lumped system analysis, tiny bodies with high heat conductivity make for suitable candidates.

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you are camping in the breathtaking mountains if colorado. you spy an unopened diet soda can floating motionless below the surface of a lake. what is the direction and amount of force the water exerts on it?

Answers

The direction and amount of force the water exerts on it is equivalent to the weight of the can up.

A floating object moves a weight of fluid equal to its own weight when it displaces a weight of water equal to its own weight. According to Archimedes' principle, the buoyant force and the fluid displacement's weight are equivalent.

The upthrust in the water matches the weight of the body in the water it floats, where upthrust is the upward vertical force applied on an item in fluid.

Hence the buoyancy principle is used when the can is floating below the lake's surface. Water will be pushing upward with a force equal to the weight of the can.

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Which of the following is a colligative property of water?
molecular structure
solubility
boiling point
reactivity

Answers

Answer:

boiling point

Explanation:

In the case of boiling point, the presence of solute particles in a solution causes the boiling point of the solution to be higher than that of the pure solvent. This is because the solute particles interfere with the movement of the solvent molecules, making it more difficult for them to escape from the surface of the solution and enter the gas phase.

Which of the following is always positive when a spontaneous process occurs?

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Answers

The second law of thermodynamics states that the universe's entropy always rises for all spontaneous reactions (positive).

Is H favorable or unfavorable for the spontaneous process?

negative

The reaction will be spontaneous at low temperatures if -T-S is positive and -H is negative (decreasing the magnitude of the entropy term). The reaction will be spontaneous at high temperatures if H is positive and T is negative (increasing the magnitude of the entropy term).

Of the following, which characterizes a spontaneous process?

Any process that happens spontaneously under specific circumstances and in a specific direction is said to as spontaneous. Without outside assistance, each choice develops on its own.

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an atom of chlorine is represented by 3717cl. how many neutrons are in the nucleus of this atom?

Answers

There are about 3256 atoms

the physical structure of a(n) ? consists of two conducting surfaces separated by an insulating material.

Answers

The physical structure of capacitor consists of two conducting surfaces separated by insulating material.

What is capacitor?

Capacitor is a device that stores electrical energy in an electric field by the virtue of accumulating electric charges on two close surfaces insulated from each other. It is a passive electronic component with two terminals and the effect of capacitor is known as capacitance

Capacitor works on the principle that the capacitance of a conductor increases when earthed conductor is brought near it. Therefore,  capacitor has two plates that are separated by a distance having equal and opposite charges. The properties of capacitors are: working voltage, tolerance, working temperature and temperature coefficient.

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(a) at what temperature do the fahrenheit and celsius scales have the same numerical value? (b) at what temperature do the fahrenheit and kelvin scales have the same numerical value?

Answers

The difference in temperature between the fahrenheit and kelvin scales is 574.25 degrees, while the difference between the fahrenheit and celsius scales is -40 degrees Celsius.

(a) Given that F = C, the relationship between the fahrenheit and celsius scales is

°F = (°C * 9/5) + 32

°F -32 = (°F * 9/5)

°F = -40

(b)  the relationship between the fahrenheit and kelvin scales is (F - 32 )/9 = (K - 273 )/5,

Let F = K

(F - 32 )/9 = (F - 273 )/5 = 574.25

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a heat engine uses a diatomic gas in a brayton cycle. what is the engine's thermal efficiency if the gas volume is halved during the adiabatic compression?

Answers

Thermal efficiency if the gas volume is halved during the adiabatic compression n=24%

Any thermal cycle's efficiency is expressed as:

                                    [tex]n=1-\frac{Tc}{Th}------(1)[/tex]

We know that for an adiabatic process:

[tex]p^{v^{Y} }=const[/tex]

From the first law, we may express pressure in terms of temperature.

[tex]p^{v} =nRT\\\\p=\frac{nRT}{v} \alpha Tv^{-1}[/tex]

As a result, we have the following for an adiabatic process:

[tex]Tv^{Y-1} =const[/tex]

Step: 2 Equating:

Let us now calculate a temperature ratio based on the volume ratio:

[tex]TcVc^{Y-1} =ThVh^{y-1}[/tex]

We get that:

[tex]\frac{Tc}{Th} =\frac{Vh^{Y-1} } {Vc^{Y-1} } =(\frac{Vh}{Vc} )^{Y-1}[/tex]

Finding the value of Efficiency:

The Efficiency will be,

[tex]n=1-(\frac{Vh}{Vc}) ^{Y-1} \\\\n=1-(\frac{1}{2} )^{1.40-1}[/tex]

n=24%

∴The thermal efficiency n=24%

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