92.16 lb is the magnitude of the weight that can be supported by the right side of the jack.
Hydraulic jacks are devices that leverage applied force to generate a larger force. In this case, a 25 lb force is applied to the left side of the jack with a square cross-section of side d = 2.5 in.
The right side of the jack is also square with a cross-section of side D = 10 in and has a difference in elevation of 2.4 ft.
To calculate the magnitude of weight, W, that can be supported by the right side of the jack, we need to calculate the pressure due to the hydrostatic force on the vertical side of the jack.
This vertical side is a rectangular shape of height Htot = 2.6 ft and length D = 10 in. Taking into account the specific gravity of the oil in the jack as soil = 0.8, the hydrostatic pressure on the vertical side is equal to the difference in elevation multiplied by the weight of the oil.
W = 2.4 ft x 0.8 x 62.4 lb/ft³ = 92.16 lb. This is the magnitude of the weight that can be supported by the right side of the jack.
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2. How does your model demonstrate the differences between the types of tectonic plates and the resulting observations in the asthenosphere?
3. How did your hypotheses of your Tectonic Egg Model compare to your experimental results?
4. What are some shortcomings of using this model as a replicable of the Earth? Suggest a way that a scientist could create a more accurate model of Earth’s tectonic plates.
The answers include the following:
The model demonstrates the differences between the types of tectonic plates and in the asthenosphere there are two types of tectonic plates which are oceanic and continental.Hypotheses of your Tectonic Egg Model compare to your experimental results such that the former is denser due to it being formed from silica, magnesium etc. Some shortcomings of using this model as a replicable of the Earth is the absence of various materials and gases and a more accurate model of Earth’s tectonic plates can be done by making it rugged and youthful. What is Plate tectonics?This is referred to as a scientific theory that explains how major landforms are created as a result of Earth's subterranean movements.
The Tectonic Egg Model when compared to your experimental results is different such that the former is denser due to it being formed from silica, magnesium etc.
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If v is the velocity vector of an object then ||v|| is the speed of the object. An airplane flying east with a speed of 200kn/hour encounters a northeastern wind with a speed of 40km/hour. What is the resultant speed of the plane?
The resultant speed of the plane would be 230.03 km/hour
Vectors are the units that have both magnitude and direction. We can directly add and subtract if they are going in the same or the opposite direction. If they are all going in the same direction, we employ the formula that will take the square root of each vector's sum of squares. In this case, the vectors are inclined to one another with angle 45° (plane flying from east to northeastern)
The formula below is used to calculate the resultant vector from two vectors that are inclined to one another. The resultant vector, R, is created when the vectors A and B are inclined at an angle Ø to one another:
R² = A² + B² + 2ABCosØ
Thus, the resultant speed of the plane would be
R² = 200² + 40² + (2 × 200 × 40 × Cos 45°)
R² = 40,000 + 1,600 +11,313.7
R =√52,913.7
R = 230.03 km/hour
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What is also know When you know both the speed and direction of an objects motion.
Answer:
When you know both the speed and direction of an object's motion, you know the velocity of the object.
one ball of mass 0.500kg travelling at 6.00 m/s to the right collides with a ball of mass 0.200 kg intially at rest .after the collision the heavier ball is travelling 2.57m/s to the right what is the velocity of the lighter bal after the collision?
Answer:
Below
Explanation:
Use law of conservation of momentum
momentum of system before collision = momentum of system after collision
.5 kg * 6 m/s = .5 kg * 2.57 m/s + .2 * x m/s
3 = 1.285 + .2x
1.715 = .2x
x = 8.575 m/s
Wind energy is increasingly relied upon to help meet global energy needs. Wind energy can be used to generate electricity using wind turbines. Which of the following are often used for energy storage of wind power? A). Converters B). Generators C). Batteries D). Rotor blades
Batteries are frequently used to store wind energy.
What is energy?Energy is a quality of matter and radiation that serves as a gauge of work-doing capacity. It can manifest in a variety of ways, including as electromagnetic radiation, thermal energy, kinetic energy, and more.
It is necessary to store the wind energy produced by wind turbines so that it can be used when there is no generation due to unfavorable wind conditions. The energy produced by wind turbines can be stored in batteries and made available for use as needed. Battery energy can also be utilized to stabilize the power system, increasing its dependability and enhancing the grid's overall ability to integrate wind energy.
a. In order to convert the direct current (DC) electricity produced by wind turbines into the alternating current (AC) electricity that is typically used in homes and businesses, converters are needed.
b. Although they can be used to generate electricity, generators are not typically used in wind power systems for energy storage.
d. Rotor blades, which are a component of wind turbines, are used to collect wind energy and transform it into mechanical energy, which is later transformed into electricity. Energy is not stored in rotor blades.
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How do you solve Newton's law of cooling in differential equations?
Newton's law of cooling states that the rate of change of the temperature of an object is proportional to the difference between its own temperature and the temperature of its surroundings. This relationship can be mathematically modeled using a first-order ordinary differential equation.
The general form of the equation for Newton's law of cooling is:
[tex]dT/dt = k(T_s - T)[/tex]
where T is the temperature of the object, [tex]T_s[/tex] is the temperature of its surroundings, k is the constant of proportionality known as the cooling rate, and t is time.
To solve this differential equation, we need to find the function T(t) that satisfies the equation. One method to solve this equation is to use the method of separation of variables. We separate the variables T and t, integrate both sides, and then solve for T.
The solution to this differential equation gives us the time-dependent temperature of the object as it cools down to the temperature of its surroundings. This solution is useful in understanding the cooling process of objects in various real-world scenarios such as heat transfer in electronics, refrigeration, and air conditioning systems.
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If the _____of proteins changes, this is called a mutation
If the sequence of amino acids of proteins changes, this is called a mutation.
What is amino acid?Amino acids are the building blocks of proteins. They are organic molecules that contain an amino group (-NH2), a carboxyl group (-COOH), a side chain (R group) unique to each amino acid, and a central carbon atom.
There are 20 different types of amino acids that can be combined to form a protein. The specific sequence of amino acids determines the protein's three-dimensional structure and its function.
Amino acids play an important role in performing several biological and chemical functions in different parts of our body, including building and repairing the tissues, the formation and function of enzymes, food digestion.
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Below are the blackbody curves for three different stars.
a.) Rank the temperature of the three stars from hottest to coldest.
b.) Which star will appear reddest? Which star will appear bluest?
(a) The ranking of the stars from the hottest to coldest is star A , star C and then star B.
(b) The star that will appear the reddest is star C and the star that will appear the bluest is star A.
Which star has the highest temperature?
The star with the highest temperature is determined by based on the energy of the stars.
The star with the highest temperature is ranked as follows;
star Astar C star BOn one end of the spectrum is red light, with the longest wavelength. Blue or violet light has the shortest wavelength. So the star that will appear the reddest is star C and the star that will appear the bluest is star A.
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A 180 kg motorcycle travels in a straight line on a horizontal road. The relationship between motorcycle’s velocity and time are given by the above graph. What is the acceleration during the first 5 s? What is the net force during first 5 s? What is the acceleration from 5 s to 10s? What is the net force from 5 s to 10 s? What is the acceleration from 10 s to 15 s? What is the net force from 10 s to 15 s? What is the acceleration from 15 s to 25s? What is the net force from 15 s to 25 s?A 180 kg motorcycle travels in a straight line on a horizontal road. The relationship between motorcycle’s velocity and time are given by the above graph. What is the acceleration during the first 5 s? What is the net force during first 5 s? What is the acceleration from 5 s to 10s? What is the net force from 5 s to 10 s? What is the acceleration from 10 s to 15 s? What is the net force from 10 s to 15 s? What is the acceleration from 15 s to 25s? What is the net force from 15 s to 25 s?
Answer:
need points my fault
Explanation:
does the compound with the molecular formula c5h11no have a spectrum of 1 nmr considering that the ir spectrum shows an absorption of around 3400
No, the molecular formula C5H11NO does not necessarily have an NMR spectrum of 1.
What is molecular formula?Molecular formula is a notation system used to represent the chemical elements and their relative ratios that make up a particular compound. It is written as a combination of symbols representing each element in the compound, with subscripts indicating the number of atoms of each element.
An NMR spectrum is determined by the type of nuclei present in the molecule and the environment of those nuclei. In this case, the molecule contains Carbon (C), Hydrogen (H), Nitrogen (N), and Oxygen (O) nuclei, and the IR spectrum shows an absorption at around 3400 cm-1. This could indicate the presence of a C=O bond, which could influence the NMR spectrum. Therefore, it is not possible to determine whether or not the compound has an NMR spectrum of 1 without further information about the structure of the molecule.
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how to determine if the encoded and measured values of a resistor were within the tolerance of one the other?
The encoded and measured values of a resistor were within the tolerance of one the other is determined by colour code.
What is a resistor?In both electrical and electronic circuits, resistors can be used in a variety of ways to control the flow of current or to produce a voltage drop. However, the actual resistor must possess some sort of "resistive" or "resistance" value in order to accomplish this.
The larger width tolerance band oriented to the right side of the resistor colour code markings indicates its tolerance. The resistor colour code markings are always read one band at a time starting from the left to the right.
The first digit of the resistance value is identified by comparing the colour of the first band with its corresponding number in the digit column of the colour chart below.
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Considering how hydrostatic forces affect the capillaries, which of the following would increase capillary hydrostatic pressure most? -Increase in small-artery pressure -Decrease in arterial pressure -Increase in venous pressure -Decrease in gravity when standing
Increase in small-artery pressure would increase capillary hydrostatic pressure most.
What are oncotic pressure and capillary hydrostatic pressure?
The systemic perfusion of the capillary, the arterial and venous pressures, and the variation in capillary resistance all affect the hydrostatic pressure. Oncotic pressure results from the inability of plasma proteins to easily pass the capillary membrane, particularly albumin.
Because of the hydrostatic pressure, fluid leaks through the capillary's pores and into the interstitial space as the blood travels along it. As the blood flows down the capillary from the arterial to the venous end, the pressure exerted by the blood will decrease.
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In the winter sport of bobsledding, athletes push their sled along a horizontal ice surface and then hop on the sled as it starts to careen down the steeply sloped track. In one event, the sled reaches a top speed of 9.2 m/s before starting down the initial part of the track, which is sloped downward at an angle of 9.0 ∘.
What is the sled's speed after it has traveled the first 100 m ?
Answer: approximately 13.6 m/s.
Explanation: The sled's speed after it has traveled the first 100 m can be determined using the principles of kinematics. We can use the equations of motion to solve this problem.
First, let's identify the given information:
- Initial speed (v₀) = 9.2 m/s (sled's top speed before starting down the track)
- Distance traveled (s) = 100 m (the first 100 m of the track)
- Angle of the slope (θ) = 9.0° (angle of the track)
To find the sled's speed after traveling 100 m, we need to determine the final speed (v) using the equation of motion that relates initial speed, final speed, distance, and angle:
v² = v₀² + 2as
Here's how we can calculate it step by step:
Convert the angle from degrees to radians:
θ = 9.0° = (9.0° * π) / 180 ≈ 0.157 radians
Determine the acceleration (a) using the gravitational acceleration and the angle of the slope:
a = g * sin(θ)
g ≈ 9.8 m/s² (acceleration due to gravity)
a ≈ 9.8 m/s² * sin(0.157) ≈ 1.36 m/s²
Substitute the known values into the equation of motion:
v² = (9.2 m/s)² + 2 * (1.36 m/s²) * (100 m)
Simplify and solve for v:
v ≈ √(9.2² + 2 * 1.36 * 100) ≈ 13.6 m/s
Therefore, the sled's speed after traveling the first 100 m is approximately 13.6 m/s.
he video shows a collapsing cloud of interstellar gas, which is held together by the mutual gravitational attractio
"The video shows a collapsing cloud of interstellar gas, which is held together by the mutual gravitational attraction of all the atoms and molecules that make up the cloud. As the cloud collapses, the overall force of gravity that draws the cloud inward because the strength of gravity follows an inverse square law with distance."
By the power of gravity, which is a natural phenomena, all objects with mass are drawn towards one another. It is most commonly experienced as the weight of objects pulling them toward the Earth’s centre. Gravity is the weakest of the four fundamental forces of nature, yet it is the most dominant force in determining the structure of the universe. It is the reason why planets, moons, and galaxies remain in their orbits.
Gravity is also responsible for the formation of stars and planets, as well as the attraction between objects such as planets and moons. The gravity between two objects depends upon their mass and distance between them. Gravity is an important factor in the motion of all objects in the universe and is directly responsible for the tides, the motion of the planets and their motion around the sun.
The question is incomplete. The complete question is 'The video shows a collapsing cloud of interstellar gas, which is held together by the mutual gravitational attraction of all the atoms and molecules that make up the cloud. As the cloud collapses, the overall force of gravity that draws the cloud inward because ___.'
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A hockey puck travels along the ice towards you, moving at a constant 8 m/s. You wish to meet the puck one quarter the distance from where you started (it travels the remaining three-quarter (3/4) distance t0 reach you).
A. If you start at rest, calculate the constant acceleration you would need to do this! Assume it takes youU seconds to meet the puck.
(Note that you don" know the initial distance between you and the puck)! (a=3 m/s2) B. Calculate the ratio of your average velocity to the puck's constant velocity: (-1/3)
Using algebraic expressions, the constant acceleration is represented as 2(d/4)/t^2 and the ratio of the the average velocity is 8/t
What is the constant accelerationA. To meet the puck one quarter of the distance from where you started, you need to cover one quarter of the total distance that the puck travels.
Let's call the initial distance between you and the puck "d". Then, the total distance the puck travels is d, and the distance you need to cover is d/4.
The time it takes for the puck to travel d is d/8 (since the puck's velocity is 8 m/s). The time it takes for you to cover d/4 is t.
Using the equation of motion, we can find the acceleration needed:
d = (1/2)at^2
d/4 = (1/2)(a)t^2
(1/2)(a)t^2 = d/4
a = 2(d/4)/t^2
We don't know the value of "d", so we cannot calculate the exact value of "a". But we can find it in terms of "t".
B. To calculate the ratio of your average velocity to the puck's constant velocity, we can use the equation:
v(average) = d/t
Let's call your average velocity "v". Then,
v/8 = d/(4t)
v/8 = d/4 * 1/t
v/8 = v(average)/t
v/8 = v(average)/t
v/v(average) = 8/t
Again, we don't know the value of "d" or "t", so we cannot calculate the exact value of the ratio. But we can represent it in terms of "t".
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A man pushes a lawn mower on a level lawn with a force of 211 N. If 50% of this force is directed forward, how much work is done by the man in pushing the mower 5.7 m?
Answer:
1201.7 N.m
Explanation:
The amount of work done by the man in pushing the mower 5.7 m can be calculated using the following formula: Work = Force x Distance. Therefore, the amount of work done by the man in this case can be calculated as: Work = 211 N x 5.7 m = 1201.7 N.m.
The formula of metal chloride is MC13. It contains 20% of the metal. The atomic weight of the metal is
(a) 27 (c) 127
(b) 56 (d) .48
Answer:
56
Explanation:
Given that the metal chloride formula is MC13, we can assume that the metal (M) is represented by the atomic symbol "M" and the atomic weight of chlorine (Cl) is 35.5.
Since 20% of the total weight of the compound is the metal, the atomic weight of the metal (M) can be calculated as:
M = (0.2 * (13 * 35.5 + M)) / 13 = 0.2 * 35.5 + 0.2 * M
Solving for M:
0.2 * M = (0.2 * 35.5) / (1 - 0.2) = 7.1
M = 7.1 / 0.2 = 35.5
So the atomic weight of the metal (M) is 35.5, and the answer is (b) 56.
What is the magnitude of the total force exerted by these two charges on a negative point charge q3
= -5.95 nC
that is placed at the origin?
The force exerted between the charges q1 and q3 is -5.25 × 10⁻⁶ N and that between q2 and q3 is -2.93 × 10⁻⁶ N. Hence the net force is - 8.18 × 10⁻⁶ N .
What is Coulomb's law ?According to Coulomb's law of force, the electrostatic force between two charges separated by a distance of r is given as follows:
Fc = Ke q1 q2 /r²
where Ke = 8.9 × 10⁹ Nm²/C²
Given the charge of q1 = 3.97 × 10⁻⁹ C
charge of q3 = -5.95 × 10⁻⁹ C
distance r = 0.200 m
then Fc = 8.9 × 10⁹ Nm²/C² ( 3.97 × 10⁻⁹ C) (-5.95 × 10⁻⁹ C)/(0.200 m)² = -5.25 × 10⁻⁶ N
Similarly, the force on q3 by the charge q2 is calculated as follows:
distance to q2 = 0.30 m
charge of q2 = 4.99 × 10⁻⁹ C.
Then Fc = 8.9 × 10⁹ Nm²/C² (4.99 × 10⁻⁹ C ) (-5.95× 10⁻⁹ C)/(0.30 m)² = - -2.93 × 10⁻⁶ N
The net electric force acting on A = 3.9 × 10⁻⁵ N - (-1.9 × 10⁻⁵ N) = 5.8 × 10⁻⁵ N.
Therefore, the net electric force acting on q3 is 8.18 × 10⁻⁶ N.
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Your question is incomplete. But your complete question probably was:
Two point charges are placed on the x-axis as follows: charge 3.97 nC is located at 0.200 m (q1) and charge 4.99 nC (q3) is at -0.304 m .What is the magnitude of the total force exerted by these two charges on a negative point charge q3
= -5.95 nc that is placed at the origin?
600 ml of air is at 27c. What is the volume of 60c
The volume of 60c is 1333.33 ml
How to find the volumeThe volume of a gas is directly proportional to its temperature, provided the pressure remains constant. The equation for this relationship is:
V1 / T1 = V2 / T2
where
V1 is the initial volume,
T1 is the initial temperature,
V2 is the final volume, and
T2 is the final temperature.
when V1 = 600 ml and T1 = 27°C, we can solve for V2:
V2 = (V1 * T2) / T1
V2 = (600 ml * 60°C) / 27°C
V2 = 1333.33 ml
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The working formula for the electric charge (Eq.(13) in the text which is q = -K (vt^1.5)/V) contains a constant involving the properties of the gas environment, plastic sphere, and the electric field chamber. List these properties, together with their SI units of measurement?
[tex]\mathrm{K = 4\pi \epsilon_0r}[/tex], where ε_0 is the permittivity of free space (8.85 x 10⁻¹² F/m) and r is the radius of the plastic sphere in meters (m).
What are the three properties of the measurement system?Rational zero, intervals, and magnitude are the three features of measurement scales also referred to as ratio scales. It is impossible to fully understand ratios of numbers when using interval scales; for instance, John's height to Mary's height is 1.32. Only by utilising the greater strength of a rational zero is this possible.
The formula for electric charge on a plastic sphere (Eq.(13)) is:
[tex]\mathrm{q = -K (vt^{1.5})/V}[/tex]
where q is the electric charge on the plastic sphere, v is the velocity of the gas molecules, t is the time during which the gas is in the electric field chamber, V is the volume of the electric field chamber, and K is a constant that depends on the properties of the gas environment, plastic sphere, and the electric field chamber.
The SI units of measurement for these properties are:
Electric charge (q): Coulombs (C)
Velocity of gas molecules (v): Meters per second (m/s)
Time (t): Seconds (s)
Volume of electric field chamber (V): Cubic meters (m^3)
Constant (K): Coulombs per meter (C/m)
Note that the constant K may also be expressed in terms of other physical quantities such as the permittivity of free space (ε₀) and the radius of the plastic sphere (r) as:
[tex]\mathbf{K = 4\pi \epsilon_0r}[/tex]
where ε₀ is the permittivity of free space (8.85 x 10⁻¹² F/m) and r is the radius of the plastic sphere in meters (m).
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Arrange the necessary steps in order for finding the molecular formula of an unknown compound from mass percent data. Place the first step at the top of the list. 1. Assume that the sample contains 100.0g of compound and express each mass percent as a mass in grams
2. convert the mass of each element to moles for each element
3. derive the emirical formula looking for the simplest whole-number ratio of moles
4. divide the molar mass of the compound by the mass of the empirical formula in order to find a multiple that is an integer
5. multiply each subscript of the empirical formula by the integer multiple
The necessary steps in order for finding the molecular formula of an unknown compound from mass percent data are:
Assume that the sample contains 100.0g of compound and express each mass percent as a mass in gramsconvert the mass of each element to moles for each elementderive the empirical formula looking for the simplest whole-number ratio of molesdivide the molar mass of the compound by the mass of the empirical formula in order to find a multiple that is an integermultiply each subscript of the empirical formula by the integer multipleThe correct answer is 1-2-3-4-5.
How to Choose an molecular FormulaLet's start with the information provided in the issue, which is the weight in grams of each constituent. If percentages are provided, we'll assume that there is a total mass of 100 grams, making each element's mass equal to the specified percentage.
Convert each element's mass to a mole by using its molar mass from the periodic table. Multiply the lowest calculated number of moles by each mole value. To the nearest entire number, round up. The mole ratio of the elements is indicated by subscripts in the empirical formula.
If the number is too large to round off, multiply each response by the same factor to obtain the lowest whole number multiple (x.1 – x.9). Like multiplying each solution in the problem by 4 to get 5, if one solution is 1.25. Then multiply each subscript of the empirical formula by the integer multiple
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The electric potential V in a region of space is given as a function of positions x by the equation V = 6x−4x^2 , where V is in volts and x is in meters.
Find the magnitude of the electric field at the point (3,0).
The electric field E at a point in space is defined as the gradient of the electric potential at that point, which is the negative of the rate of change of the potential with respect to position. In this case, the gradient of the electric potential V can be found by taking the derivative of V with respect to x: dV/dx = 6 - 8x
The magnitude of the electric field at the point (3,0) is then given by the magnitude of the gradient at that point:
E =|dV/dx| = |6 - 8x| = |6 - 8(3)| = |-18| = 18 Volts/meter. So the magnitude of the electric field at the point (3,0) is 18 Volts/meter.
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There is friction between the block and the table. The suspended 2 kg mass on the left is moving np, the 4 kg mass slides to the right on the table, and the suspended mass 4 kg on the right is moving down. The acceleration of gravity is 9.8 m/s^2. What is the magnitude of the acceleration of the system? Answer in units of m/s^2.
The magnitude of the acceleration of the entire system will be 2.13m/s² option (5) is correct.
The masses that are suspended from the table m = 2 kg and m' = 4 kg.
And the mass kept on the table is, m'' = 4 kg.
The frictional force will oppose the motion of mass 4 kg, kept on the table. Then the required value of frictional force will be,
f=∪×[tex]m^{//}[/tex]×g
=0.11×4×9.8
=4.321
Since the mass kept on the right side is more.
-f + m''g + (m' +m)a = m'g
Where,
a is the magnitude of the acceleration of the system.
-4.312+ 4(9.8) + (4 -2)a = 4(9.8)
2a = 4.312
a= 2.135
Thus, we can say that the magnitude of the acceleration of the entire system is 2.13m/s²
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Complete question is:
There is friction between the block and the
table.
The suspended 2 kg mass on the left is
moving up, the 4 kg mass slides to the right
on the table, and the suspended mass 4 kg on
the right is moving down.
The acceleration of gravity is 9.8 m/s
2
.What is the magnitude of the acceleration
of the system?
1. 1.67253
2. 1.9845
3. 1.75311
4. 2.47673
5. 2.1315
6. 2.058
7. 2.548
8. 1.33933
9. 1.5288
10. 2.03127
Answer in units of m/s²
A player hits a ball with a bat. The action force is the impact of the bat against the ball. What is the reaction to this force?A. The force of the ball against the batB. The weight of the ballc. C. Air resistance on the balld. D. The grip of the player's hand against the bate. E. none of the above
The reaction to this force is A: "The force of the ball against the bat".
Newton's Third Law of Motion states that for every action, there is an equal and opposite reaction. When a player hits a ball with a bat, the action force is the impact of the bat against the ball. The reaction to this force is the equal and opposite force of the ball against the bat, meaning the ball will push back against the bat with the same amount of force that the bat hit it with.
So, the force of the ball against the bat is the equal and opposite reaction to the impact of the bat against the ball.
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Neglecting friction, if a Cadillac and Volkswagen start rolling down a hill together, the heavier Cadillac will get to the bottom:A. before the Volkswagen.B. at the same time as the Volkswagen.C. after the Volkswagen.
Answer is B. at the same time as the Volkswagen. Because without friction the mass will have no effect on acceleration.
How acceleration is effected by friction?
According to Newton's second law, an object's acceleration is inversely correlated with its net external force.
We now understand that the net force, also referred to as an unbalanced force, is the vector sum of all the forces that have been applied to the object. We are aware that friction frequently causes motion to go in the other direction. This implies that friction causes a contraction and cancels out some of the force that causes motion.
This suggests a smaller acceleration and a smaller net force.
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As long as an object is not gaining or losing mass, a constant force applied to an object for a period of time will result in a change ina) direction.b) speed.c) weight.d) velocity.e) acceleration.
As long as an object is not gaining or losing mass, a constant force applied to an object for a period of time will result in a change in velocity (D)
When a constant force is applied to a large body, in accordance with Newton's second law, it's velocity will change at a rate that is constant during the acceleration. In the simplest case, when a force is applied to a moving object that is at rest, the object accelerates in the direction of the applied force.
A body that is already moving or that is being observed from a moving inertial reference frame may look to accelerate, decelerate, or change direction depending on the direction of the force as well as the directions that the object and the referencing frame are traveling in regard to one another.
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one of the primary characteristics present in situations in which management science techniques are applied is_____.
One of the primary characteristics present in situations in which management science techniques are applied is that the management problems have only a few variables. Thus, the correct option is A.
What are Management science techniques?Management science is important while doing any research, business, or study because it helps the organizations in identification of the issues which they need to solve, streamline management efforts, use resources more effectively, and also develop roadmaps for achieving the set goals.
Management problems are studied and these are so complicated that managers need help to analyze a large number of variables before doing any research.
Therefore, the correct option is A.
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Your question is incomplete, most probably the complete question is:
One of the primary characteristics present in situations in which management science techniques are applied is ________.
A) that the management problems have only a few variables
B) that the situation deals with quantifiable factors such as sales
C) that the situation deals with the physiological, safety, social, esteem, and self-actualization needs of organization members
D) that the situation deals with assessing qualitative factors of the workplace or environment
E) that social implications are the guidelines for making a particular decision
collars a and b are connected by a 25-in.-long wire and can slide freely on frictionless rods. consider a 105-lb force q applied to collar b as shown. determine the tension in the wire when x
a) The tension in the wire when x=9 is 60 lb.
b) The corresponding magnitude of the force P required to maintain the equilibrium of the system is 96 lb.
The tension in the wire and the corresponding magnitude of the force P required to maintain the equilibrium of the system:
1. Draw a free-body diagram for each collar.
2. Apply the principle of equilibrium to each collar.
Collar A:
[tex]\sum F_x = 0[/tex]
P - T = 0
P = T
Collar B:
[tex]\sum F_y = 0[/tex]
T - Q = 0
T = Q
Use the equations from step 2 to solve for T.
P = T = Q
T = 60 lb
3. Use the equation [tex]$T = \frac{F}{2} + \frac{P \cdot x}{l}$[/tex] to find the force P.
[tex]T = \frac{F}{2} + \frac{P \cdot x}{l} $$[/tex]
[tex]60 = \frac{F}{2} + \frac{P \cdot 9}{25} $$[/tex]
[tex]120 = F + \frac{9P}{25} $$[/tex]
[tex]120 = F + \frac{9}{25}P $$[/tex]
[tex]120 - \frac{9}{25}P = F $$[/tex]
[tex]\frac{25}{16}P = F $$[/tex]
[tex]P = \frac{16}{25}F $$[/tex]
[tex]P = \frac{16}{25} \cdot 120 $$[/tex]
[tex]P = \frac{16}{25} \cdot 120[/tex]
P = 96 lb
So, the tension in the wire when x=9 in is 60 lb and the corresponding magnitude of the force P required to maintain the equilibrium of the system is 96 lb.
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The question is -
Collars A and B are connected by a 25-inch-long wire and can slide freely on frictionless rods. If a 60 -lb force Q is applied to collar B as shown, determine (a) the tension in the wire when x=9 in. (b) the corresponding magnitude of the force P required to maintain the equilibrium of the system.
3. A water wave has a frequency of 2 hertz and a wavelength of 5 meters. Calculate its speed.
4.
A wave has a speed of 50 m/sec and a frequency of 10 Hz. Calculate its wavelength.
5.
A wave has a speed of 30 m/sec and a wavelength of 3 meters. Calculate its frequency.
6.
A wave has a period of 2 seconds and a wavelength of 4 meters.Calculate its frequency and speed.
Note: Recall that the frequency of a wave equals 1/period and the period of a wave equals 1/frequency.
7.
A sound wave travels at 330 m/sec and has a wavelength of 2 meters. Calculate its frequency and period.
8.
The frequency of wave A is 250 hertz and the wavelength is 30 centimeters. The frequency of wave B is
260 hertz and the wavelength is 25 centimeters. Which is the faster wave?
9. The period of a wave is equal to the time it takes for one wavelength to pass by a fixed point. You stand on a
pier watching water waves and see 10 wavelengths pass by in a time of 40 seconds.
a. What is the period of the water waves?
W
b. What is the frequency of the water waves?
C.If the wavelength is 3 meters, what is the wave speed?
A wave is a disturbance in a medium. It is a product of wavelength and frequency, and time period of a wave is the reciprocal of frequency of wave.
What is a Wave?A wave is a disturbance in a medium which carries energy without a net movement of particles in the medium. Wave may take the form of elastic deformation, a variation of pressure, electric or magnetic intensity, or temperature.
Speed of a wave = wavelength of the wave × Frequency of the wave
3. Frequency = 2 Hz, Wavelength = 5 m.
Speed of the wave = wavelength × Frequency
Speed of the wave = 2 × 5
Speed of the wave = 10 m/s
4. Speed of wave = 50 m/s, wavelength = 3 m
Speed of wave = wavelength of the wave × Frequency
frequency = Speed of wave/ wavelength
Frequency of wave = 50/3
Frequency of wave = 16.66 Hz.
5. Speed of wave = 30 m/s, wavelength = 3 m,
Frequency of wave = Speed of wave/ wavelength
Frequency of wave = 30/3
Frequency = 10 Hz.
6. Time period = 2 seconds, wavelength = 4 meters,
Frequency of wave = 1/T
Frequency = 1/2
Frequency = 0.5 Hz,
Speed of wave = Wavelength × Frequency
Speed of wave = 4 × 0.5
Speed of wave = 2 m/s
7. Speed of wave = 330 m/s, wavelength = 2 m
Frequency = ?
Time period = ?
Speed of wave = Wavelength × Frequency
Frequency = Speed of wave/ Wavelength
Frequency = 330/2
Frequency = 165 Hz,
Time period = 1/f
Time period = 1/165
Time period = 0.0060 seconds
8. Wave A: Frequency = 250 Hz, wavelength = 30 cm,
Wave B: Frequency = 260 Hz, wavelength = 25 cm,
Time period of Wave A = 1/ 250
Time period of Wave B = 1/ 260
Time period of Wave B is less than time period of Wave A. Therefore, Wave B is faster than Wave A.
9. Number of waves = 10, Total time = 40 seconds,
Therefore, time period = Number of waves/ Total time
Time period = 10/ 40
Time period = 1/4
Time period = 0.25 seconds.
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A plane flying in a straight line in the sky moves a total of 5100m in one minute ( not in second) How far was it traveling on average?
Answer:
see below
Explanation:
Distance = 5100m
time = 1min = 60s
avg speed= distance/time
v = 5100m/60s
v = 85m /s
so the plane was traveling a average distance of 85m per second.