True or False ?7. When two spheres with equal masses collide centrally and elastically, the spheres exchange their kinetic energies. 8. In each impact, the momentum of the colliding body system is marginally the same before and immediately after the impact, but varies during the impact. 

Answers

Answer 1

(7)

When two spheres with equal masses collide centrally and elastically, the spheres exchange their kinetic energies. This statement is a false statement.


Related Questions

How many kilocalories must be removed from 920 grams of water at a temperature of zero degrees Celsius to transform it into ice at zero degrees Celsius? A)2760 B)497000 C)73.3

Answers

Given:

The mass of the water, m=920 g

The temperature of the water, T=0 °C

To find:

The heat required to be removed to transform water to ice.

Explanation:

The latent heat of the fusion of ice is L=79.7 Cal/g.

The latent heat of fusion is the heat that is needed to be removed from the water to convert it into ice.

The amount of the heat that is needed to be removed is given by,

[tex]Q=mL[/tex]

On substituting the known values,

[tex]\begin{gathered} Q=920\times79.7 \\ =73324\text{ Cal} \\ \approx73.3\text{ kCal} \end{gathered}[/tex]

Final answer:

The amount of heat that is to be removed to convert the given amount of water into ice is 73.3 kCal.

Therefore the correct answer is option C.

Current is measured through a resistor during a laboratory experiment. 1.833 C of charge is measured to pass through the resistor in 1,538 s. What is the current of the circuit? (6 decimal places)

Answers

Given,

The charge passed through the resistor, q=1.833 C

The time, t=1,538 s

The electric current can be defined as the time rate of flow of charge. Thus the electric current that passes through the resistor is given by,

[tex]I=\frac{q}{t}[/tex]

On substituting the known values,

[tex]\begin{gathered} I=\frac{1.833}{1538} \\ =1.191807\times10^{-3}\text{ A} \\ =1.191807\text{ mA} \end{gathered}[/tex]

Thus the current of the circuit is 1.191807 mA.

Questions : 1. What is the penguin’s average velocity during the chase? 2. What is the penguin’s average speed during the chase?

Answers

Given:

• Distance traveled rightward = 6 m

,

• Distance traveled leftward = 10 m

,

• Total time, t = 30 s

Let's solve for the following:

• (1). What is the penguin’s average velocity during the chase?

To find the average velocity, apply the formula:

[tex]v=\frac{d}{t}[/tex]

Where:

• v is the average velocity in m/s

,

• d is the displacement

,

• t is the total time in seconds.

The displacement given a 6 meters rightward move and 10 m leftward move is:

d = 6m + (-10 m) = 6m - 10m = -4 m

Thus, we have:

[tex]\begin{gathered} v=\frac{-4}{30} \\ \\ v=-0.13\text{m/s} \end{gathered}[/tex]

The average velocity is -0.13 m/s.

• (2). What is the penguin’s average speed during the chase?

To find the average speed, we have:

[tex]v=\frac{d}{t}[/tex]

v is the average speed in m/s

d is the total distance = 6m + 10m = 16m

t is the total time = 30 s

Thus, we have:

[tex]\begin{gathered} v=\frac{16}{30} \\ \\ v=0.53\text{ m/s} \end{gathered}[/tex]

The average speed is 0.53 m/s.

ANSWER:

0. Average velocity = -0.13 m/s

,

1. Average speed = 0.53 m/s

2. One of your classmates, in a fit of unrestrained ego, jumps onto a lab table!a) Draw a qualitative force diagram for the table. Use marks on the vectors to show the balance of forces.b) Your classmate's mass is 65 kg and the table weighs 500 N. Calculate the normal force on thetable by the floor. Show your work!c) Find the mass of the table.

Answers

a)

b)

Apply newton's second law

N = Wm + Wt

N = normal

Wm = weight of the man = mass of classmate *gravity= 65 kg * 9.8 m/s = 637 N

Wt = weight of the table = 500 N

N = 637 + 500 = 1,137 N

c) Weight = mass x gravity

Mass = Weight / gravity = 500 N / 9.8 m/s^2 = 51.02 kg

With what force (per hand) does a man need to lift to keep the wheelbarrow in balance?The total weight of the cart and the load is 100 kg and at the point shown in the center of gravityAnd the right answer about this is 12.5kg per hand

Answers

ANSWER

122.5N per hand

EXPLANATION

First, we have to draw a free body diagram,

A wheelbarrow is an example of a lever but in this case, both forces are on the same side of the pivot - which is the wheel. To keep the wheelbarrow in balance, the output force, Fo, must be equal to the weight of the wheelbarrow,

[tex]F_o=m\cdot g=100\operatorname{kg}\cdot9.8m/s^2=980N[/tex]

Using the mechanical advantage relation between the input and output forces and the lever arms,

[tex]\frac{F_o}{F_i}=\frac{l_i}{l_o}_{}[/tex]

We have to find Fi. To solve for Fi, first raise both sides to the exponent of -1 - in other words, flip both fractions,

[tex]\frac{F_i}{F_o}=\frac{l_o}{l_i}[/tex]

And multiply both sides by Fo,

[tex]F_i=F_o\cdot\frac{l_o}{l_i}[/tex]

The output force is the one found before, 980N. Then, the length of the lever arm of the output force is the distance from the center of gravity to the wheel, 0.5m, and the length of the lever arm of the input force is the distance from the man's hands to the wheel, 2m,

[tex]F_i=980N\cdot\frac{0.5m}{2m}=\frac{980N}{4}=245N[/tex]

The total force the man has to make is 245N. Assuming each hand can support the same weight, then each hand should be doing 122.5N of force to keep the wheelbarrow in balance.

Suppose a person pushes a box over a distance of 5.48 m with a constant force of 427.5 N. How much work do they do over this distance?

Answers

Answer:

2342.7 J

Explanation:

The work can be calculated as

W = Fd

Where F is the force and d is the distance.

Replacing F = 427.5 N and d = 5.48 m, we get

W = (427.5 N)(5.48 m)

W = 2342.7 J

Therefore, the answer is 2342.7 J

A person with a mass of 78.0 kg is standing on a bathroom scale in an elevator that is accelerating downwards at a rate of 1.25 m/s2What is the normal force? (the reading on the scale)(input your answer with one decimal place)

Answers

Given:

• Mass, m = 78.0 kg

,

• Acceleration = 1.25 m/s²

Let's find the normal force.

To find the normal force, apply the formula for Newton's second law:

[tex]\begin{gathered} \Sigma F_y=ma_y \\ \\ F-mg=-ma \end{gathered}[/tex]

Where:

m is the mass of the person = 78.0 kg

a is the acceleration = 1.25 m/s²

g is acceleration due to gravity = 9.8 m/s²

F is the normal force

Thus, we have:

[tex]\begin{gathered} F=mg-ma \\ \\ F=m(g-a) \\ \\ F=78(9.8-1.25) \end{gathered}[/tex]

Solving further:

[tex]\begin{gathered} F=78(8.55) \\ \\ F=666.9\text{ N} \end{gathered}[/tex]

The reading on the scale will be in kilograms.

Hence, we have:

[tex]m=\frac{N}{g}=\frac{666.9}{9.8}=68.1\text{ kg}[/tex]

Therefore, the reading on the scale will be 68.1 kg or 666.9 N

ANSWER:

666.9 N

Determine the mass of an object when the period of oscillation is 11 s and spring constant is 10 N/m.

Answers

Answer:

30.65 Kg.

Explanation:

The period of oscillation T, the spring constant k, and the mass m are related by the following equation.

[tex]T=2\pi\sqrt[]{\frac{m}{k}}[/tex]

So, solving for m, we get:

[tex]\begin{gathered} \frac{T}{2\pi}=\sqrt[]{\frac{m}{k}} \\ \frac{T^2}{4\pi^2}=\frac{m}{k} \\ \frac{T^2k}{4\pi^2}=m \\ m=\frac{T^2k}{4\pi^2} \end{gathered}[/tex]

Therefore, replacing T = 11 s and k = 10 N/m, we get:

[tex]m=\frac{(11s)^2(10\text{ N/m)}}{4\pi^2}=30.65\text{ kg}[/tex]

Then, the mass of the object is 30.65 Kg.

Determine the order of magnitude of the following small number by entering the appropriate exponent n below: 4,870×1021kg≈10nkg .

Answers

We can see that the order of magnitude of the problem is:

[tex]n=21[/tex]

hi good afternoon pls I need solution to a problem the question goes like this : The horizontal floor of a water reservoir is said to be 1.0m deep when viewed vertically from above .if the refractive index of water is 1.35 calculate the real depth of the reservoir a)2.35mb)1.35mc)1.00md)0.35m

Answers

[tex]\begin{gathered} n1sin\theta1=n2sin\theta2 \\ 1sin(90)=1.35sin\theta2 \\ \theta2=47.79\degree \end{gathered}[/tex]

First, you have to use Snell's law to calculate the refractive angle. Remember the light enters at a 90 angle and the refractive index of air is 1.

[tex]\begin{gathered} h\cdot sin\theta2=1m \\ h=\frac{1}{sin(47.79)}=1.35m \end{gathered}[/tex]

11 When early humans discovered fire, it likely changed the way they survived in harsh winter climates. What is another change that happened around the same time because of this discovery? A. Their diets moved from nuts and berries to include meat. B. They developed salves or ointments to deal with burns. C. Their language skills progressed to describe things like fire. D. They learned how to preserve food through fermentation.

Answers

Another change that happened around the same time as discovery of fire was that their diets moved from nuts and berries to include meat. So, the correct option is (A)

What was the influence of Fire on Human Evolution?

Humans must have learned to handle fire very early in human history. Most likely due to natural sources such as lightning strikes and naturally occurring forest fires. It wasn't until much later that mankind invented how to make fire. Hominidae (genus Homo) appeared in East Africa about 2.5 million years ago, and fire is closely associated with many stages of evolution. The ability to cook food is thought to have led to the rise of Homo erectus from its more primitive ancestors.

Cooked foods provide much more energy than raw foods with low food consumption. This may have given time to develop social skills too. Cooked foods also detoxify potentially harmful bacteria. This has increased the variety of food available.

Cooking with fire is thought to have developed a large brain. These factors are thought to have driven the evolution of other human traits, including large brains and bodies, small teeth, modern limb proportions, and many social aspects of human-related behavior ( Wrangham et al. 1999). Indeed, by softening food, fire may have had a significant impact on extending human life beyond the age of healthy teeth.

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Which of the following best describes refraction of a wave?A. As a wave moves around a corner or through an opening, itsdirection of motion changes.B. As a wave reaches the interface between two different media, itsdirection of motion changes and it remains in the first medium.C. As a wave moves from one medium to another, the energy of thewave is converted to other forms of energy.O D. As a wave moves from one medium into another in which itsspeed is different, the wave changes direction.

Answers

From the given answer choices, let's select the best statement that best describes refraction of a wave.

Refraction of a wave can be said to be a change in direction of waves when they move from one medium to another.

As wave move from

A rocket in outer space is traveling toward a far-off planet. An astronaut turns on the rocket’s engines, which exerts a force on the rocket. There is no gravity or air resistance.When the astronaut turns off the engines, what will the rocket do?possible answersIt will steadily slow down because no forces are acting on it.It will continue moving with a constant speed because no forces are acting on it.It will continue moving with a constant speed because the force from the engines is still acting on it.It will steadily slow down until the force from the engines is gone.

Answers

Answer:

It will continue moving at a constant speed because no forces are acting on it.

Explanation:

By the second law of Newton, the force is proportional to the acceleration. If there is no force, there is no acceleration. So, when the astronaut turns off the engines, the rocket will have no acceleration which means that the speed will be constant.

Therefore, the answer is:

It will continue moving at a constant speed because no forces are acting on it.

One end of a thin rod is attached to a pivot about which it can rotate without friction. Air resistance is absent. The rod has a length of 0.48 m and is uniform. It is hanging vertically straight downward. The end of the rod nearest the floor is given a linear speed V so that the rod begins to rotate upward about the pivot. What must be the value of V such that the rod comes to a momentary halt in a straight up orientation, exactly opposite to its initial orientation?

Answers

ANSWER:

5.32 m/s

STEP-BY-STEP EXPLANATION:

We can determine the velocity from the following equation (initial kinetic energy:

[tex]\frac{1}{6}\cdot v^2_0=g\cdot L[/tex]

Where L is the length of the rod and g would be gravity, we replace and calculate the value of the initial velocity:

[tex]\begin{gathered} v^2_0=6\cdot9.81\cdot0.48 \\ v^{}_0=\sqrt[]{28.2528} \\ v_0=5.32\text{ m/s} \end{gathered}[/tex]

The velocity is 5.32 m/s

ulietta and Jackson are playing miniature golf. Julietta's ball rolls into a long, straight upward incline with a speed of 3.24 m/s and accelerates at -0.234 m/s/s for 2.56 seconds until it reaches the top of the incline and then continues along an elevated section. Determine the length of the incline?

Answers

The distance that is covered by the  ball is  22.4 m.

What is the length of the incline?

We know that the length of the incline is the distance that have been travelled by the ball as it rolls up the incline. We have to use the formula for motion which is;

v^2 = u^2 + 2as

v = final  velocity

u = initial velocity

a = acceleration

s = distance

Now;

3.24^2 = 0^2 -  2(-0.234) * s

3.24^2 = -  2(-0.234) * s

s =  3.24^2/-  2(-0.234)

s = 22.4 m

Thus the ball would roll up a distance of about  22.4 m.

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18.
An object with a mass of 3.2 kg has a force
What is the resulting acceleration of the object?
of 7.3 newtons
applied to it.

Answers

2.28125 ms^-2  is the resulting acceleration of the object.

Force = ma

a=F/m

a=7.3 newtons/ 3.2 kg

a=2.28125 ms^-2

Acceleration is the rate of change in a moving object's speed and direction over time. When anything moves faster or slower, it is considered to be accelerating. Motion on a circle increases even while the speed is constant because the direction is always changing.

Since acceleration has both a magnitude and a direction, it is a vector quantity. Velocity is a vector quantity as well. The definition of acceleration is the change in velocity vector during a time interval divided by the time interval.

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How much heat is necessary to change 500 g of ice at - 10°C to water at 20°C ?

Answers

Apply the specific heat equation:

q= mcΔT

q= heat energy

m= mass = 500g

c = specific heat capacity = 4.186 J/gC

ΔT= change in temperature = 30°

q= 500g x 4.186 J/gC x 30 C = 62,790 Joules

Then apply the latent heat formula:

q= mL

L = latent heat fusion, vaporization, etc for the substance = 334 J/g

q = 500 x 334 J/g = 167,000 J

Total q = 62,790 + 167,000 = 229,790 J

What is the magnitude of a force that is required to keep a spring with a spring constant 205 N/m compressed 0.4 m from its starting point?

Answers

By Hooke's law we have that the magnitude of the force exerted by a pricng is given by:

[tex]F=kx[/tex]

where k is the spring constant and x is the length of extension or compression, then we have:

[tex]F=205\cdot0.4=82[/tex]

Therefore the force is 82 N

As soon a the starting gun sounded out, a sprinter rapidly accelerated from rest to her top speed. Does the KE and PE increase, decrease, or stay constant?

Answers

Potential energy is the energy that an object possesses due to its position. The potential energy of the object is directly proportional to its height.

The kinetic energy is the energy that an object possesses due to its motion. The kinetic energy of an object is directly proportional to the square of its velocity.

As the sprinter starts to accelerate forward, the sprinter starts to gain velocity but the height of the sprinter remains the same. Thus, the kinetic energy of the sprinter increases and the potential energy remains the same.

A rectangular painting is 120 cm wide and 80 cm high. At what speed must the painting move parallel to its width if it is to appear to be square?

Answers

Given

A rectangular painting is 120 cm wide and 80 cm high.

To find

At what speed must the painting move parallel to its width if it is to appear to be square?

Explanation

According to length contraction, the proper length of an object contracts when it moves with a velocity.

Thus,

[tex]\begin{gathered} l=l_o\sqrt{1-\frac{v^2}{c^2}} \\ \Rightarrow80=120\sqrt{1-\frac{v^2}{c^2}} \\ \Rightarrow\frac{2}{3}=\sqrt{1-\frac{v^2}{c^2}} \\ \Rightarrow\frac{4}{9}=1-\frac{v^2}{c^2} \\ \Rightarrow\frac{v^2}{c^2}=1-\frac{4}{9} \\ \Rightarrow\frac{v^2}{c^2}=\frac{5}{9} \\ \Rightarrow v=\frac{\sqrt{5}}{3}c \end{gathered}[/tex]

Conclusion:

The required velocity is

[tex]\frac{\sqrt{5}c}{3}\frac{m}{s}[/tex]

Light from red, green and blue spotlights shine on asheet of paper. The paper contains cyan pigment. Whichof the three primary light colors will be absorbed by thepigment?

Answers

Given data:

The given colors are red, green, and blue.

The cyan pigment is capable of absorbing red color. The

The correct answer is red light.

In the figure below a given point charge is shown following five different paths through a uniform electric field. In which path is the change in potential energy for the point charge the greatest? (The electric field lines are shown in blue and the paths are show in green.)

Answers

ANSWER

Path D

EXPLANATION

We want to identify the path for which the change in potential energy for the point charge is greatest.

The change in potential energy of the point charge is equal to the amount of work that is done by the charge to move from its position along the path taken. This implies that the greatest change in potential energy will occur along the path that requires that the most work is done.

Work done is dependent on force and distance moved by the point charge. Hence, the farther the distance travelled by the point charge, the greater the work done in the motion.

Since path D has the longest distance, then, it is in path D that the change in potential energy for the point charge is the greatest.

A 45.8 kg block is placed on an inclined plane that is 44.2 degrees from the horizontal. What is the acceleration of the block? Ignore friction.I have to do the following:1. Draw a free body diagram2.Identify Givens and Unknowns3.Identify the Equations4.Set up the equation using the givens and unknowns5.Solve

Answers

Answer:

The acceleration of the block = 6.83 m/s²

Explanation:

The free body diagram representing the given description is:

The mass of the block, m = 45.8 kg

The angle of inclination, θ = 44.2°

Acceleration due to gravity, g = 9.8 m/s²

Applying Newton's second law of motion

∑F = ma

mgsinθ = ma

Divide both sides by m

[tex]\begin{gathered} \frac{mg\sin \theta}{m}=\text{ }\frac{ma}{m} \\ a\text{ = gsin}\theta \end{gathered}[/tex]

a = 9.8 sin (44.2)

a = 9.8(0.697)

a = 6.83 m/s²

The once-popular LP (long-play) records were 12 in. in diameter and turned at a constant 33 1/3 rpm.

Answers

The angular speed of the long-play (LP) in rad/s is 3.49rads/s and its period in seconds is 1.80 seconds.

How is angular speed and period calculated?

To convert the angular speed from revolution per minutes (rpm) to seconds the following formula is used:

ω = (k revolution/60 seconds) x (2π/1 revolution)

ω = 2πk/60seconds (k x 2π/T in seconds)

where, k = constant in rpm, 33 1/3rpm = 33.3333rpm

ω  = 2π33.3333/60 = 209.4374/60

ω  = 3.49rad/s

For period in seconds, ω = 2π/T

where, T = period and ω = angular speed, 3.49rad/s

To find T, T = 2π/ω

T = 2π/3.49rad/s

T = 1.80s

Using the formula, ω = 2πk/60seconds, the angular speed in rad/s of the LP is 3.49rad/s and the time period for the records using T = 2π/ω is 1.80s.

The full question is:

The once-popular LP (long-play) records were 12 inches in diameter and turned at a constant 33(1/3) rpm. Find the angular speed of the LP in rad/s and its period in seconds.

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A water heater uses a resistor of 16 Ω to boil water. The heater is connected to a 240 V power source. If the heater is used for 2 hours a day, calculate the cost to run the heater for a year (365 days). The electricity cost by TNB is given as 21.8 sen/kWh.

Answers

First, calculate the power used each day. Use the following formula:

[tex]P=\frac{V^2}{R}[/tex]

where,

V: voltage = 240V

R: resistor = 16 Ω

Replace the previous values into the formula for P:

[tex]P=\frac{(240V)^2}{16\Omega}=3600W=3.6kW[/tex]

Then, consider that the energy used in kWh, each day, is:

[tex]E=P\cdot t=3.6kW\cdot2h=7.2\text{kWh}[/tex]

And in a year, the energy used is:

[tex]E^{\prime}=7.2\text{kWh}\cdot365=2628kWh[/tex]

And the cost will be:

[tex]\text{cost}=(2628kWh)(\frac{21.8sen}{\text{kWh}})=57290.4sen[/tex]

Hence, the cost to run the heater in one year is 57290.4sen

A sample of gas in a cylinder is compressed by a piston at a constant pressure of 0.800 atm. The volume of the cylinder decreases from 8.50 L to 2.00 L, while at the same time 320 J of energy leaves the gas by heat.
(a)
What is the work done on the gas (in J)?

Answers

The work done on the gas 526.89 Joule.

What is work done?

The amount of force multiplied by the distance the thing travelled in the direction of the applied force is how much work is done on an object.

Work is equal to force times distance.

Given parameters:

Constant pressure of the gas: p = 0.800 atm.

Initial volume of the cylinder: V₁ = 8.50 L.

Final volume of the cylinder: V₂ = 2.00 L.

Energy leaves the gas by heat: E = 320 J.

So,  the work done by the gas (W) = pΔV = p(V₂ - V₁)

= 0.800(2.00 - 8.50) atm-lit

= - 5.2 atm-lit

= - 5.2×101.325 Joule

= - 526.89 Joule.

Hence, The work done on the gas 526.89 Joule.

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Even when the head is held erect, as in the figure below, its center of mass is not directly over the principal point of support (the atlanto-occipital joint). The muscles in the back of the neck musttherefore exert a force to keep it erect. That is why your head falls forward when you fall asleep in class. If the perpendicular distance between the line of action for the weight of the head and thepivot point is rw = 2.4 cm and the perpendicular distance between the line of action for theforce the muscles exert on the head and the pivot point is rMi=5.1 cm. determine each or thefollowina. (Assume the weight of the head is 50 N.)

Answers

We are asked to determine the force required by the neck muscle in order to keep the head in equilibrium. To do that we will add the torques produced by the muscle force and the weight of the head. We will use torque in the clockwise direction to be negative, therefore, we have:

[tex]\Sigma T=r_{M\perp}(F_M)-r_{W\perp}(W)[/tex]

Since we want to determine the forces when the system is at equilibrium this means that the total sum of torque is zero:

[tex]r_{M\perp}(F_M)-r_{W\perp}(W)=0[/tex]

Now, we solve for the force of the muscle. First, we add the torque of the weight to both sides:

[tex]r_{M\perp}(F_M)=r_{W\perp}(W)[/tex]

Now, we divide by the distance of the muscle:

[tex](F_M)=\frac{r_{W\perp}(W)}{r_{M\perp}}[/tex]

Now, we substitute the values:

[tex]F_M=\frac{(2.4cm)(50N)}{5.1cm}[/tex]

Now, we solve the operations:

[tex]F_M=23.53N[/tex]

Therefore, the force exerted by the muscles is 23.53 Newtons.

Part B. To determine the force on the pivot we will add the forces we add the vertical forces:

[tex]\Sigma F_v=F_j-F_M-W[/tex]

Since there is no vertical movement the sum of vertical forces is zero:

[tex]F_j-F_M-W=0[/tex]

Now, we add the force of the muscle and the weight to both sides to solve for the force on the pivot:

[tex]F_j=F_M+W[/tex]

Now, we plug in the values:

[tex]F_j=23.53N+50N[/tex]

Solving the operations:

[tex]F_j=73.53N[/tex]

Therefore, the force is 73.53 Newtons.

URGENT!! ILL GIVE
BRAINLIEST!!!! AND 100 POINTS!!!!!!

Answers

Property that makes cup and spoon get hot is, (C) Heat was convicted to the cup and spoon where the hot water molecules moved through the cooler molecules in the surrounding and transferred the heat.

What is heat?

Heat is a physical property that means when an object is collected into the fire it can absorb some energy through the fire. That energy is called heat. It can be measured by °c.

How can we conclude the statement about heat?

Heat is a property that transfers its energy into a cooler object to maintain equilibrium. When the chocolate object and hot water were poured into a ceramic cup it start transferring the heat.

As we know ceramic is heat conducting particle. It can be absorb the heat and transferred it too. So when the hot water is poured in there, the heat has connection with the cold ceramic cup and spoon.

Then the heat started to transfer his heat into the cold ceramic cup and spoon to maintain the energy. The ceramic cup and spoon started to collect the heat within them.

For this reason, Priya's cup and spoon become hot. So from this discussion we can conclude that,

The Heat was convicted to the cup and spoon where the hot water molecules moved through the cooler molecules in the surrounding and transferred the heat.

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Answer: (C) Heat was convicted to the cup and spoon where the hot water molecules moved through the cooler molecules in the surrounding and transferred the heat.

Use Polya's four-step problem-solving strategy to solve the following exercise.A frog is at the bottom of a 13-foot well. Each time the frog leaps, it moves up 3 feet. If the frog has not reached the top of the well, then the frog slides back 1 foot before it is ready to make another leap. How many leaps will the frog need to escape the well?______ leaps

Answers

ANSWER:

6 leaps

STEP-BY-STEP EXPLANATION:

Keep adding 2 until the sum is 10 and count the number of 2 that has been added. Then add 1 to that number, as the last jump will cover the remaining 3 feet and the frog will reach the top of the well.

[tex]\begin{gathered} 2+2+2+2+2=10 \\ 5\text{ leaps} \end{gathered}[/tex]

Carry out the plan

The number of 2 added is 5.

Add 1 to the number 5.

5+1 = 6

Hence, the total number of leaps is 7.

For 1st leap

3- 1 = 2

For 2nd leap

2+3 = 5-1 = 4

For 3rd leap

4+3=7-1 = 6

For 4th leap

6+3=9-1 = 8

For 5th leap

8+3=11-1=10

For 6th leap

10+3 = 13

Hence, the total number of leaps is 6

A truck is driving 500 meters/minute. He slows down to a complete stop over 0.25minutes. Calculate his acceleration.

Answers

Given

The velocity is v=500 meters/minute

The time taken is t=0.25 minute

To find

The acceleration

Explanation

We know,

The acceleration is the ratio of velocity to time.

Thus,

[tex]\begin{gathered} a=\frac{v}{t} \\ \Rightarrow a=\frac{500}{0.25} \\ \Rightarrow a=2000\text{ m/min}^2 \end{gathered}[/tex]

Conclusion

The acceleration is

[tex]2000\text{ m/min}^2[/tex]

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