Describe a method for cooking an egg that uses conduction, convection, and radiation.

Answers

Answer 1
Steaming the egg

The heat is conduction through the pan and into the water
There is convection current in the water and the pot
The heat is radiated from the water to the egg
Answer 2

Heat is transferred from the pan to the water through conduction, convection current is present in both the pot and the water, the egg receives heat from the water through radiation.

What is Convection?

Through moving a heated fluid, like air or water, convection is the method by which heat is transferred.

Most fluids have a tendency to expand when heated, which causes them to become less dense and rise due to the increased buoyancy. This effect's circulation is responsible for the even heating of the air in a heated room or the water in a kettle: heated molecules expand the space they move in by moving faster against one another, rise, and then cool and get closer to one another once more, increasing density and causing a consequent sinking.

In case of conduction direct contact is required, but in case of radiation it is not necessary.

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Related Questions

Can you guys help to understand this graph I'm so confused why I getting wrong?

Answers

Thanks for the question!

A would be walking away from home because the distance is going down.

B would be not walking because the distance is staying constant.

C would be walking slowly because the slope is small.

D would be walking quickly because the slope is large.

Hope this helps!
The one fact that needs to be mentioned but isn't given anywhere on or around the graph is: The distance, on the vertical axis, is the distance FROM home. So any point on the graph where the distance is zero ... the point is in the x-axis ... is a point AT home.

Segment D ...
Walking AWAY from home; distance increases as time increases.

Segment B ...
Not walking; distance doesn't change as time increases.

Segment C ...
Walking away from home, but slower than before; distance increases as time increases, but not as fast. Slope is less than segment-D.

Segment A ...
Going home; distance is DEcreasing as time increases. Walking pretty fast ... the slope of the line is steep.

How is a scientific law unlike a scientific theory?

Answers

The difference between scientific theory and scientific law!!! A scientific law is a description of an observed phenomenon. A SCIENTIFIC THEORY IS AN EXPLANATION OF AN OBSERVED PHENOMENON. UNLIKE LAWS, THEORIESACTUALLY EXPLAIN WHY THINGS ARE THE WAY THEY ARE..

Answer:

Both scientific law and theory are the scientific statements related to any natural phenomenon.

Both are the proved hypothesis but they differ as a scientific law tells how a natural phenomenon takes place whereas a theory explains why the natural phenomenon takes place.

A scientific law cannot be changed but a theory can be modified and changed when new evidence comes into existence.

Thus, both are different.

What is not a reason correlations are useful?

Correlations consider relationships.
Correlations allow you to make inferences.
Correlations allow you to determine causes.

Answers

Answer:

Correlations allow you to determine causes.

Explanation:

I just had this on my lesson and used the other answer and I got it wrong so I just wanted to make it correct!! (FYI i saw the right answer on my lesson after I got it wrong)

A person leaves a house and walks three blocks north, then walks three blocks west. In what direction is the displacement of the person, relative to the starting point? A North B Northwest C South D Southwest

Answers

B Northwest hope this helps


A wave has a frequency of 3.3hz and a wavelength of 1.2m what is the speed of the wave?

Answers

1.7 m that would be the corect answer hope this helps

A 700 g can of beans is dropped from a shelf that is 1.5 m high. What is the gravitational potential energy of this can? Round your answer to the nearest tenth of a joule.
_____ J.

Answers

To find the gravitational potential energy of an object, we can use this equation: GPE = mgh m is the mass of the object in kg g = 9.80 m/s^2 h is the height of the object in meters GPE = mgh GPE = (0.700 kg) (9.80 m/s^2) (1.5 m) GPE = 10.3 J The gravitational potential energy of this can is 10.3 J

Answer:  10.3

Explanation:  Edge

Gold has a density of 19.3 grams per cubic centimeter. what is the density of gold in metric tons per cubic meter?

Answers

Final answer:

The density of gold is 19.3 grams per cubic centimeter. To convert this to metric tons per cubic meter, we convert grams to metric tons and cubic centimeters to cubic meters, which gives us a density of 19.3 metric tons per cubic meter.

Explanation:

The question asks for the density of gold in metric tons per cubic meter. Gold's known density is 19.3 grams per cubic centimeter. To convert this to metric tons per cubic meter, we first need to convert grams to metric tons. We know that 1 metric ton equals 1,000,000 grams. Therefore, 19.3 grams is 0.0000193 metric tons. Then, we need to convert cubic centimeters to cubic meters. As there are 1,000,000 cubic centimeters in a cubic meter, the density of gold becomes: 0.0000193 metric tons times 1,000,000, equaling 19.3 metric tons per cubic meter.

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If an object has zero acceleration, does that mean it has zero velocity?

Answers

not really as acceleration is rate of change of velocity therefore zero acceleration would Mean that the velocity is constant
Final answer:

Zero acceleration means that the object's velocity is constant, not that it is zero. An object in motion could have zero acceleration if it's moving at a consistent speed in a straight line. An object at rest would have both zero acceleration and zero velocity.

Explanation:

Even if an object has zero acceleration, that does not necessarily mean it has zero velocity. In Physics, velocity is the speed of an object in a particular direction, and acceleration is the rate at which its velocity changes. If an object's acceleration is zero, that means the object's velocity is not increasing or decreasing—it's constant. For example, an object moving at a consistent speed of 10 m/s in a straight line would have zero acceleration. However, its velocity is not zero because it is still moving. On the other hand, an object at rest would also have zero acceleration and zero velocity. Therefore, zero acceleration indicates constant velocity but the velocity could be any value, including zero.

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A bicycle rider travels 50.0 km in 2.5 hours. What is his average speed?

Answers

50km / 2.5 = 20 km per hour

PLS HELP
A billiard ball travels 22 cm in the positive direction, hits the cushion and rebounds in the negative direction, and finally comes to rest 6.5 cm behind its original position.

What is the distance covered by the ball?
What is the displacement of the ball?

Answers

7.5m/s

cuz the ball moves at a bad position making it so sideways and back to the front herr yerddd

Answer:

Part a)

Distance = 28.5 cm

Part b)

Displacement = 15.5 cm

Explanation:

Part a)

Total distance moved by the ball is given as total path length

so here we can say

distance moved in positive direction = 22 cm

distance moved in negative direction = 6.5 cm

total path length = 22 + 6.5 = 28.5 cm

Part b)

Displacement is the shortest distance between initial and final position

so we need to add vectorially

so here we have

displacement in positive direction = 22 cm

displacement in negative direction = 6.5 cm

Total displacement = 22 - 6.5 = 15.5 cm

If a river current is 8.0 m/s, and a boat is traveling 10.0 m/s upstream, what is the boat’s speed relative to the riverbank?

Answers

Answer:

The relative speed of the boat is found to be - 2 m/s or 2 m/s in opposite direction to the river current.

Explanation:

Let us, consider the direction of river as the reference of positive direction. Hence,

Speed of River = Vr = 8 m/s

Since, the boat is traveling upstream. The upstream direction means that the boat is traveling in the opposite direction of the river current. Therefore, its direction will be negative. Hence,

Speed of boat = Vb = - 10 m/s

Now, the relative speed will be the vector sum of both speeds, with relative directions:

Relative Speed = V = Vr + Vb

V = 8 m/s - 10 m/s

V = - 2 m/s

This shows that the magnitude of speed of boat is 2 m/s and its direction will be opposite to that of river current.

To find the boat's speed relative to the riverbank, subtract the river current's speed from the boat's speed. The resulting speed is 2.0 m/s upstream relative to the riverbank.

Calculating the Boat's Speed Relative to the Riverbank

To determine the boat’s speed relative to the riverbank, we need to consider both its own speed and the speed of the river current.

The boat is traveling upstream at a speed of 10.0 m/s.The river current is flowing downstream at 8.0 m/s.

When traveling upstream, the boat’s speed relative to the riverbank can be found by subtracting the speed of the river current from the boat’s speed:

[tex]\text{Relative speed = Speed of the boat - Speed of the river current}[/tex]

Therefore,

[tex]\text{Relative speed} = 10.0 m/s - 8.0 m/s = 2.0 m/s.[/tex]

Thus, the boat is moving at 2.0 m/s relative to the riverbank when it is traveling upstream.

If a block of copper measures 2.00 cm x 4.00 cm x 5.00 cm and weighs 356 grams, what is its density?

Answers

density = g/mL
cm^3 = mL

2*4*5 = 40 mL

density = 356/40 = 8.9 g/mL

The density of the block is 8.9 gm/cm³

What is volume ?

Volume is a three dimensional space occupy by the body of particular shape. Generally expressed in cubic meter.

Here, it is given that length of block (l) = 2 cm

breadth of block (b) = 4 cm

heigth of block (h) = 5 cm

weight of block (m) = 356 gm

the volume of the block is calculated using formula :

[tex]\begin{aligned}V&= lbh\\&=2\cdot4\cdot5\\&=40 \text{ cm}^{3}\end{aligned}[/tex]

Now density of block will  be :

[tex]\begin{aligned}\rho&=\frac{m}{V}\\&=\frac{356}{40}\\&=8.9 \:\text{gm}/ \text{cm}^{3}\end{aligned}[/tex]

Therefore, the density of the block is 8.9 gm/cm³

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Can an object, such as a plane at cruising altitude, be in motion if the net force acting on it is zero?

Answers

If the net force of the object, such as a plane at cruising altitude then the motion will not be changed. Newton's first law states that "if there is no force on an object, then its state of motion will not change".

The process of converting a continuous signal to a series of 1s and 0s introduces small errors to the sound as it is recorded. What is this process called?

Answers

Answer: Quantization

Quantization maps input values from continuous data into digital signals. This process is common in signal processing of sound, wave and seismic signals.

Round off and truncation errors are common in truncation processes.
Truncation errors are easier to control, but round off errors are dictated by the data processing hardware.

A 55 g mouse runs out to the end of the 17 cm-long minute hand of a grandfather clock when the clock reads 10 minutes past the hour. What torque does the mouse's weight exert about the rotation axis of the clock hand?

Answers

The equation for torque is written below:

τ = rFsinθ
where
τ is torque 
r is the length of minute hand
F is the force exerted by the mouse
θ is the angle

Every number interval in the clock has an angle of 30°. Because 10 minutes past the hour coincides with the number 10, θ = 30°*2 = 60°. For the force, it is simply the weight of the mouse which is
F = mg = (55g)*(1 kg/1000g)*(9.81 m/s²) = 0.53955 N

Substituting the rest of the values,

τ = (17cm)*(1 m/100 cm)*(0.53955 N)*(sin60°)
τ = 0.079 N·m

The torque exerted by the mouse's weight on the clock's minute hand is calculated to be 0.09163 N·m using the torque formula with force, radius, and the angle between them.

To determine the torque exerted by the mouse's weight on the clock's minute hand when it is 10 minutes past the hour, we need to apply the formula:

Torque (τ) = r × F × sin(θ)

Here:

r is the radius (distance from the axis to the point where the force is applied), which is 17 cm or 0.17 m. F is the force, which is the weight of the mouse. The weight is given by the mass times the acceleration due to gravity: F = m × g = 0.055 kg × 9.8 m/s² = 0.539 N. θ is the angle between the force and the lever arm. At 10 minutes past the hour, the minute hand is horizontal, and the force of gravity acts vertically, so θ = 90° (sin(90°) = 1).

Substituting these values into the formula:

τ = 0.17 m × 0.539 N × 1 = 0.09163 N·m.

Thus, the torque exerted by the mouse's weight about the rotation axis of the clock hand is 0.09163 N·m.

The radius of earth is 6,370,000m. Express this measurement in km in scientific notation with the correct number of significant digits.

Answers

Answer:

[tex]6.3\times10^3 km[/tex]

Explanation:

First, convert meters to kilometers:

[tex]6370000m*\frac{1km}{1000m} =6370km[/tex]

Now, express it using scientific notation following the next steps:

The decimal point moves to the left as many spaces until it reaches the right of the first digit. The coefficient is written, followed by the multiplication sign. Base 10 is written with the exponent equal to the number of spaces that the comma moves.

Therefore:

[tex]6370km=6.3\times 10^3km[/tex]

The radius of the Earth in scientific notation with the correct number of significant digits is 6.37 × [tex]10^6[/tex] km

To express the radius of the Earth in scientific notation with the correct number of significant digits, we need to count the number of significant digits in the original measurement and then convert it to scientific notation.

The original measurement is 6,370,000 meters.

Step 1: Count the significant digits:

There are four significant digits in the number 6,370,000.

Step 2: Convert to scientific notation:

To express the number in scientific notation, we move the decimal point to the position where we have only one non-zero digit before the decimal point. In this case, that's the number 6. To do that, we need to move the decimal point six places to the left:

6,370,000 = 6.37  × [tex]10^6[/tex]

Step 3: Add the correct number of significant digits:

Since there were four significant digits in the original number, we need to keep four significant digits in the scientific notation as well.

Therefore, the radius of the Earth in scientific notation with the correct number of significant digits is:

6.37  × [tex]10^6[/tex] km

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A duck with a mass of 0.90 kilograms flies at a rate of 12.0 m/s. What is the kinetic energy of the duck?

Answers

Answer:

Duck's kinetic energy is 64.8 Joules

Explanation:

It is given that,

Mass of the duck, m = 0.9 kg

Velocity of the duck is, v = 12 m/s

We have to find the velocity of the duck. It is given due to the motion of an object. Mathematically, it is written as :

[tex]KE=\dfrac{1}{2}mv^2[/tex]

[tex]KE=\dfrac{1}{2}\times 0.9\ kg\times (12\ m/s)^2[/tex]

KE = 64.8 Joules

Hence, the kinetic energy of the duck is 64.8 Joules              

If a 3-kg object has a momentum of 33 kg·m/s, what's its velocity?

a. 36 m/s

b. 9.1 m/s

c. 11 m/s

d. 99 m/s

Answers

11 m/s simply divide the momentum with the mass

Spaceship 1 and spaceship 2 have equal masses of 300 kg. spaceship 1 has an initial momentum magnitude of 600 kg-m/s. what is its initial speed?

Answers

Explanation :

Given that,

Mass of the spaceship 1, m = 300 kg

Initial momentum of the spaceship 1, p = 600 kgm/s

Momentum is the product of the mass and the velocity with which it is moving i.e.

p = m v

[tex]v=\dfrac{p}{m}[/tex]

[tex]v=\dfrac{600\ kgm/s}{300\ kg}[/tex]

[tex]v=2\ m/s[/tex]

The initial velocity of the spaceship 1 is 2 m/s.

Hence, this is the required solution.

Final answer:

To find the initial speed of spaceship 1 with a momentum of 600 kg-m/s and mass of 300 kg, one should use the momentum formula (momentum = mass * velocity) and solve for velocity, resulting in an initial speed of 2 m/s.

Explanation:

To calculate the initial speed of spaceship 1 with a given momentum, we need the formula for momentum, which is the product of mass and velocity (p = m * v). Since we have the mass (m = 300 kg) and the momentum (p = 600 kg-m/s), we can solve for the initial speed (v) of spaceship 1 by rearranging the formula to v = p / m.

Doing the calculation gives us v = 600 kg-m/s / 300 kg, which results in v = 2 m/s. Therefore, the initial speed of spaceship 1 is 2 meters per second.

Which of the following vectors is equal to r⃗ AB?

Answers

Vector AB is equal to vector DC

Further explanation

Vector is a quantity that has a magnitude and direction.

A vector in a cartesian coordinate is represented by an arrow in which the slope of the arrow shows the direction of the vector and the length of the arrow shows the magnitude of the vector.

A position vector of a point is a vector drawn from the base point of the coordinates O (0,0) to that point.

The addition of two vectors can be done in the following ways:

[tex]\overrightarrow {AB} + \overrightarrow {BC} = \overrightarrow {AC}[/tex]

A negative vector is a vector with the same magnitude but in opposite direction.

[tex]\overrightarrow {AB} = -\overrightarrow {BA}[/tex]

Let's tackle the problem!

Two vectors are equal if they have the same magnitude and direction. In the attached picture, it can be clearly seen that the vector AB has the same magnitude and direction with vector DC. Therefore, vector AB is equal to vector DC.

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Answer details

Grade: High School

Subject: Physics

Chapter: Vectors

Keywords: Velocity , Driver , Car , Deceleration , Acceleration , Obstacle , Speed , Time , Rate , Vector , Scalar

Final answer:

The vector r⃗ AB denotes the vector from point A to point B. It is calculated by subtracting the coordinates of point A from the coordinates of point B. To determine which of the presented vectors corresponds to r⃗ AB, knowledge of the coordinates of points A and B is required.

Explanation:

The vector r⃗ AB represents the vector from point A to point B. In order to identify which of the given vectors is equal to r⃗ AB, you would need to know the coordinates of points A and B. The vector r⃗ AB is computed by subtracting the coordinates of point A from the coordinates of point B (i.e., B - A). For example, if point A has coordinates (x1, y1) and point B has coordinates (x2, y2), then the vector r⃗ AB would be (x2-x1, y2-y1).

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base your answers on the following four graphs, which represent the relationship between speed and time for four different objects, A, B, C, and D moving, in a straight line

Answers

I would say B. Hope this helps Plz give a thx

The required answers are: 1) Object C, 2) Object B, 3) Object C.

Based on the graphs, here are the answers to the given questions:

Object C had a reta rding force acting on it. This is because its speed is decreasing over time, which means it is decelerating.

Object B was not accelerating. This is because its speed is constant over time.

Object C traveled the greatest distance in the 3.0-second time interval. The area under the speed-time curve represents the distance traveled, and Object C's curve has the largest enclosed area.

Area = Triangle + rectangle

A = 1/2 x base x height + length x breadth

A = 1/2 x 3 x (30-20) + 3 x 20

A = 15 + 60

A = 75 = distance in meters.

Complete Question:

Based your answers to questions on the following four graphs, which represent the relationship between speed and time for four different objects, A, B, C, and D moving, in ạ straight line.

1. Which object had a reta rding force acting on it?

2. Which object was not accelerating?

3. Which object traveled the greatest distance in the 3.0-second time interval?                                

If an atom of nitrogen binds wit three hydrogen atoms to form a molecule of ammonia, how many lone pairs of electrons does nitrogen have?
A. One
B. Three
C. Four
D. Five

Answers

C. Four lone pairs of electrons

Answer:

If an atom of nitrogen binds wit three hydrogen atoms to form a molecule of ammonia, the nitrogen have one lone pairs of electrons.

Explanation:

Ammonia is the binding of nitrogen to three hydrogens covalently, that is, the bonds that form share their electrons to acquire the stability of the electronic structure of the noble gas. Shared electrons are located at the outermost level (valence electrons).  

Nitrogen has five pairs of electrons in its valence layer, wishing to have eight electrons to acquire stability. Hydrogen has an electron in its outer shell, and it must have two electrons to be stable. If nitrogen shares an electron covalently with each of the three hydrogens, the latter will have the two electrons to complete its outer shell and be stable. And nitrogen will acquire the three necessary electrons, one for each hydrogen bond, to have eight electrons and acquire stability. But, as mentioned, the nitrogen in its outer shell has five electrons. If three of them are shared covalently, there is a pair of electrons that is not shared.  These two electrons, which form the pair of electrons, is the solitary pair or pair of electrons that are not shared, that is, the pair of valence electrons that is not forming a bond, nor shared with other atoms. This is what causes the ammonia molecule not to have a flat shape, but to have a tetrahedral shape.

So, if an atom of nitrogen binds wit three hydrogen atoms to form a molecule of ammonia, the nitrogen have one lone pairs of electrons.

Like the polar bear, the walrus is a strong swimmer, although it does not have the same endurance. For short periods of time, a walrus can swim at an average speed of 9.7 m/s. How far would a walrus swim at this speed in 3.4 minutes?

Answers

the answer should be 35.89 meters in 3.4 minutes. I dont know for sure though
The answer should be 35.89 meters in3.4 minutes

When you see a traffic light turn red, you apply the brakes until you come to a stop. If your initial speed was 12 m/s, and you were heading due west, what was your average velocity during breaking? Assume constant deceleration.

Answers

For rectilinear motion having a constant acceleration, the average velocity is meant literally as an average of the initial and final velocity. Generally, the average velocity is equal to the total distance to the total time. However, for constant acceleration, it is also equivalent to the mean of the two velocities. Hence,

average velocity = (0 + 12 m/s)/2 = 6 m/s

Since the motion is heading west, according to conventionality, the velocity should have a negative sign. So, the average velocity is -6 m/s.

Which statement correctly describes the relationship between current, voltage, and resistance? If we
Select one:
A. decrease the resistance, and do not change the voltage, the current will decrease.
B. decrease the voltage, and do not change the resistance, the current will also decrease.
C. increase the resistance, and do not change the current, the voltage will remain the same.
D. increase the current, and increase the resistance, the voltage will decrease.

Answers

B. The relationship between voltage, current and resistance is V=IR where V is directly proportional (one increases, the other also increases) to I and R while I and R are indirectly proportional (one increases, the other decreases).

Final answer:

The correct answer is that if we decrease the voltage without changing the resistance, the current will decrease. So, the correct option is B.

Explanation:

The statement that correctly describes the relationship between current, voltage, and resistance is: If we decrease the voltage, and do not change the resistance, the current will also decrease. This is in accordance with Ohm's Law which states that current (I) is equal to the voltage (V) divided by the resistance (R), or I = V/R. Therefore, if the voltage is decreased and resistance remains constant, the current will decrease as well.

Regarding the parallel circuit question, if two identical resistors are connected in parallel and the resistance of one is increased, the current through the unaffected resistor remains the same because the voltage across it hasn't changed. However, the total current in the circuit will decrease because the overall resistance has increased.

To increase the power dissipated in a circuit with constant current, one should reduce the resistance. Power (P) can be calculated using the formula P = I2R, where I is current and R is resistance. Reducing resistance increases power dissipation.

Are the objects described here in static equilibrium, dynamic equilibrium, or not equilibrium at all? Explain.

a. a 200 pound barbell is held above your head
b. a girder is being lifted at a constant speed by a crane
c. a girder is being lowered into place. its is slowing down
d. a jet plane has reached its cruising speed an altitude
e. a box in the back of a truck doesn't slide as the truck stops

Answers

Statement a and e are in static equilibrium, b and d are in dynamic equilibrium and c is not at equilibrium at all.

FURTHER EXPLANATION

When the net force acting on an object is zero, the object is said to be at equilibrium. The state of equilibrium can be classified into two: static and dynamic.

Static equilibrium is when the net force is zero resulting in the object being at rest or not moving.

Dynamic equilibrium is when the resultant force acting on an object is zero and the object is moving in a uniform motion (i.e. constant or unchanging speed).

A. a 200 pound barbell is held above your head

Since the barbel is "held above your head" and is implied to be at rest since there is no change in its position during the time it is held, then this situation is an example of static equilibrium.

B. A girder is being lifted at a constant speed by a crane

This is dynamic equilibrium because the object is moving "at a constant speed".

C. A girder is being lowered into place. It is slowing down.

This is not equilibrium condition because the objects is neither at rest nor moving at a constant speed. It is "slowing down", so the speed is decreasing.

D. A jet plane has reached its cruising speed and altitude.

The "cruising speed" is the speed that is maintained while the jet plane is traveling because this is considered to be the most efficient speed. Since it is maintained, the jet plane is said to be in constant motion. Therefore, this is dynamic equilibrium.

E. A box in the back of a truck doesn't slide as the truck stops.

This is static equilibrium because the box is stationary or not moving.

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Keywords: equilibrium, static equilibrium, dynamic equilibrium

Final answer:

Objects in static equilibrium are at rest with balanced forces, while those in dynamic equilibrium move with constant velocity and no acceleration. A barbell held still is in static equilibrium, a girder moving consistently while being lifted is in dynamic equilibrium, and a plane at cruising altitude and speed is also in dynamic equilibrium.

Explanation:

Objects can be in either static equilibrium, dynamic equilibrium, or not in equilibrium at all. When an object is at rest and the net external force and torque acting on it are zero, it is in static equilibrium. On the other hand, an object in motion with constant velocity and zero acceleration, where the net external forces and torques are also zero, is in dynamic equilibrium.

a. A 200 pound barbell held above your head is in static equilibrium if it is motionless and the forces acting on it are balanced.b. A girder being lifted at a constant speed by a crane is in dynamic equilibrium because it moves with a constant velocity which means there is no net acceleration.c. A girder being lowered into place that is slowing down is not in equilibrium because it is experiencing a net acceleration, meaning that the forces are not balanced.d. A jet plane at cruising speed and altitude is in dynamic equilibrium as it is moving with a constant velocity and the forces are balanced.e. A box in the back of a truck that doesn't slide as the truck stops is initially in dynamic equilibrium while the truck is in motion if the box is moving at a constant velocity relative to the truck, but it becomes static equilibrium once the truck stops if the box remains at rest.

what are the three hallmarks of science

Answers

1Seek explanations for observed phenomena that rely solely on natural causes
2Progresses through creating and testing models of nature that explain observations as simply as possible
3Scientific model must make testable predictions; abandon or revise model if predictions do not agree with observations
Final answer:

The three hallmarks of science are empiricism, skepticism, and the use of rational arguments.

Explanation:

The three hallmarks of science are: empiricism, skepticism, and the use of rational arguments. Empiricism refers to the concept that all knowledge is derived from sensory experience. It involves the collection of data and observation of phenomena. Skepticism in science refers to the practice of questioning the validity and reliability of claims and not accepting them blindly. It involves requiring substantial evidence before affirming a claim. Rational arguments refer to using logical reasoning to explain natural events. Scientists use rational arguments to construct theories from experimental results.

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If you place a balloon in the freezer, it will __________.
Question 16 options:

deflate because volume is inversely proportional to temperature

stay the same size because there is no relationship between volume and temperature

expand because volume is inversely proportional to temperature

deflate because volume is directly proportional to temperature

Answers

The answer is "Deflate because volume is directly proportional to temperature"

Answer: deflate because volume is directly proportional to temperature

Explanation:

Charles' Law: This law states that volume is directly proportional to the temperature of the gas at constant pressure and number of moles.

[tex]V\propto T[/tex]     (At constant pressure and number of moles)

[tex]\frac{V_1}{T_1}=\frac{V_2}{T_2}[/tex]

where,

[tex]V_1[/tex] = initial volume of gas

[tex]V_2[/tex] = final volume of gas

[tex]T_1[/tex] = initial temperature of gas

[tex]T_2[/tex] = final temperature of gas

As volume is directly proportional to temperature, as the balloon is kept in freezer, the temperature would decrease and thus the volume will decrease and it will deflate.

If a bullet travels at 551.0 m/s, what is its speed in miles per hour?

Answers

First, convert meters into feet. One meter = 3.28 feet. Next, convert meters per second to feet per second. 551.0 m/s = 1,807.28 ft/sec. Now using the knowledge that 5280 ft = 1 mile and there are 3600 seconds in an hour; convert 1,807.28 ft/sec into miles per hour. The final answer to the question is 1,232.24 miles per hour.

A wave has the wavelength equal to 396 nm. what must be the frequency of this wave

Answers

This assumes that the wave has velocity c (is light).
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