Engineering Admissions Assessment 2019 is one of the closest available past papers for the Test of Mathematics for University Admission. Below, all 40 questions are mapped to the TMUA topics they test, each with its answer. Sit it cold under exam timing, then work back through anything you missed using the solutions.
What this paper covers on the TMUA
Every question mapped to the Test of Mathematics for University Admission specification, so you know exactly which areas it tests.
The diode is connected in series with a resistor and a 6.0 V battery. The current in the circuit is 8.0 mA. What is the resistance of the resistor? (Assume that the battery has negligible resistance.)
The resistance to the motion of a car is directly proportional to the square of the speed of the car. The car increases its speed by 20%. What is the percentage increase in the resistance to the motion of the car?
A water-tight cylinder with a thin, freely moving piston contains 2.0×10−3m3 of trapped air at atmospheric pressure of 1.0×105Pa. When the cylinder is submerged in water of constant density 1000kg m−3, the volume of air in the cylinder decreases to 4.0×10−4m3. The piston is at a depth h below the surface of the water and the water surface is open to the atmosphere. What is the depth h? (gravitational field strength = 10Nkg−1; assume that the temperature of the air remains constant and that air is an ideal gas)
The secondary coil of an ideal, 100% efficient transformer is connected to a resistor by cables of total resistance 1500Ω. The current in the primary coil is 4.0 A. There are 240 turns in the primary coil and 4800 turns in the secondary coil. What is the power produced as heat in the cables?
Two tanks of water are connected by a solid cylindrical copper bar of length l and diameter d. The bar is insulated. One tank contains water at 90°C and the other tank contains water at temperature θ.
For which of the following conditions is thermal energy conducted along the bar at the lowest rate?
The ball for a garden game is a solid sphere of volume 192cm3. For the children's version of the game the ball is a solid sphere made of the same material, but the radius is reduced by 25%. What is the volume, in cm3, of the children's ball?
The radioactive isotope X becomes the stable isotope Y after a succession of decays involving only the emission of alpha and beta (β−) particles. During the decay of one nucleus from X to Y, a total of seven particles are emitted. It is known that more of these particles are alpha particles than beta particles. The atomic number of X is Z and the mass number of X is A. Which row in the table could give the atomic number and the mass number of Y?
A.atomic number of Y: Z-2, mass number of Y: A-12
B.atomic number of Y: Z-5, mass number of Y: A-8
C.atomic number of Y: Z-8, mass number of Y: A-20
D.atomic number of Y: Z-10, mass number of Y: A-24
E.atomic number of Y: Z-11, mass number of Y: A-16
The kinetic energy of an object of mass 4.0kg, travelling in a straight line, increases from 32 J to 200 J in 3.0 seconds due to a constant resultant force. What is the value of this resultant force?
PR and QS are the diagonals of a rhombus PQRS. PR = (3x+2) cm QS = (8–2x) cm The area of PQRS is 11cm2. What is the difference, in cm, between the two possible lengths of PR?
A block is designed with a cylindrical channel to accommodate a hot-water pipe. The block is 100 cm long and it has a square cross-section of side 22.0 cm with a cylindrical hole in the middle, as shown in the diagram:
[diagram not to scale] The diameter of the cylindrical hole is 14.0 cm and the density of the material from which the block is made is 0.100g cm−3. What is the mass of the block? (take π to be 722)
A solid pyramid has a square base of side length 12cm and a vertical height of h cm.
[diagram not to scale] The volume of the pyramid, in cm3, is equal to the total surface area of the pyramid, in cm2. What is the value of h? (volume of pyramid = 31×area of base×vertical height)
A sample initially contains equal numbers of atoms of a radioactive isotope X and a stable isotope Y. Isotope X has a half-life of 3 years and decays in a single stage to the stable isotope Y. What is the ratio number of atoms of X: number of atoms of Y in the sample 6 years later?
A hydroelectric power station uses the water in a reservoir to power the generators. The water falls through a vertical height of 150m to the turbines which power the generators. The efficiency of the power station is 90% and the output power of the power station is 1800 MW. The gravitational field strength is 10Nkg−1 and the density of water is 1000kg m−3. What volume of water passes through the turbines in one minute?
A car P of mass 1000 kg is travelling north at 30m s−1 along a straight, horizontal road when it hits another car Q which is directly ahead of P and travelling in the same direction. Car Q has a mass of 500 kg and is travelling at 20m s−1. The collision lasts for 0.20 s and immediately after the collision car Q is moving north at 30m s−1. What is the speed of P immediately after the collision and what is the size of the average resultant force that acts on Q during the collision? (Assume that no external forces act on the cars during the collision.)
A.speed of P / m s−1: 20, average force on Q / N: 25000
B.speed of P / m s−1: 20, average force on Q / N: 50000
C.speed of P / m s−1: 20, average force on Q / N: 100 000
D.speed of P / m s−1: 20, average force on Q / N: 125000
E.speed of P / m s−1: 25, average force on Q / N: 25000
F.speed of P / m s−1: 25, average force on Q / N: 50000
G.speed of P / m s−1: 25, average force on Q / N: 100 000
H.speed of P / m s−1: 25, average force on Q / N: 125000
A metal wire of length 0.50m has a uniform cross-sectional area of 4.0×10−7m2. There is a current of 4.0 A in the wire. What is the potential difference across the ends of the wire? (resistivity of the metal = 1.6×10−7Ωm)
A uniform square trap door of side 0.80 m and mass 14kg has a smooth hinge at one edge and is held open at an angle of 30° to the horizontal. It is supported by a single rigid rod placed so that it meets the surface of the trap door at 90° at a distance 0.10m from the top edge of the trap door, as shown.
What is the normal contact force exerted on the trap door by the rod? (gravitational field strength = 10N kg−1)
Two small loudspeakers are placed side by side 30 cm apart. They are connected to the same signal generator so that they emit sound of frequency 400 Hz in phase with one another. The sounds both reach a microphone placed 40 cm directly in front of one of the two loudspeakers as shown.
What is the phase difference between waves from the loudspeakers as they arrive at the microphone? (speed of sound = 320m s−1)
An astronaut on the Moon throws a ball vertically upwards. The ball has a mass of 2.0 g and is thrown upwards at 80m s−1. What is the maximum height gained by the ball? (gravitational field strength close to the Moon's surface = 1.6N kg−1)
A student has one 300Ω resistor and another resistor of resistance R. The student plots a graph of current I against potential difference V for the 300Ω resistor and then for both resistors connected in parallel.
A light, vertical, copper wire of length 2.4m and uniform cross-sectional area 2.0×10−6m2 supports a load of mass 4.0 kg. The Young modulus of copper is 1.2×1011Pa. What is the strain energy in the wire? (gravitational field strength = 10Nkg−1; assume that the wire obeys Hooke's law and that the cross-sectional area remains constant)
Light travelling in a transparent liquid strikes the surface from below. The angle between the surface of the liquid and the direction of travel of the light is α. The light then travels along the surface between the liquid and the air as shown in the diagram.
Now, light travelling in air strikes the surface from above so that the angle between the surface and the direction of travel of this light is also α. After the light strikes the surface from above, the angle between the surface and the direction of travel of the refracted light is β. Which expression gives β? (all angles are in degrees)
The velocity-time graph is for an 80kg person in a lift that is moving vertically upwards.
What is the magnitude of the contact force between the person and the lift floor at the time corresponding to X? (gravitational field strength = 10Nkg−1)