Set of equipment for carrying out 23 student experiments in classical mechanics. Comes with comprehensive student and instructor experiment manuals and instructions. In a tough plastic tray containing a foam insert with cut-outs for the equipment and featuring a transparent lid. Experiments are set up and performed on the SEK Base Plate 1000789 (U8408035) so that they are compact but still clear in their layout and objectives.
Contents:
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2 Stand rods with external and internal thread, 400 mm
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1 Stand rod with external thread, 400 mm
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2 Stand rods, 110 mm
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2 Double clamps
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1 Beam balance
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2 Weighing pans with holders
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1 Scale for balance
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1 Axle rod for pulleys
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1 Rolling pin with add-on weights
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1 Block and tackle with two pulleys and two hooks
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1 Block and tackle with two pulleys and one hook
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1 Multiple pulley
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1 Plastic pulley, 40 mm
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4 Weights, 25 g
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1 Weight, 50 g
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1 Weight, 100 g
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1 Magnetic base
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1 Adjustable bracket
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2 S-shaped hooks, 1 g
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2 S-shaped hooks, 2 g
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1 S-shaped hook, 5 g
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1 Body for friction and inertia experiments
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1 Set of plastic strips for friction experiment
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1 Dynamometer 1 N
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1 Dynamometer 2 N
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1 Leaf spring, 330 mm
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1 Coil spring with 2 eyelets, approx. 5.25 N/m
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100 m of twine
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2 Pointers
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1 Measuring cylinder
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1 Stand base for measuring cylinder
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3 Strips of velour paper
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1 Set square
Includes 23 Experiments on the Subject of Mechanics:
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Hooke's law
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Calibrating a dynamometer
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Deformation of a leaf spring
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Addition of forces acting along the same line
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Resolution of a force into two components
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Investigation of inertia
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Types of friction
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Laws of static and kinetic friction
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Equilibrium conditions for a first-class lever
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Equilibrium conditions for second and third-class levers
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Forces, paths and work with fixed pulleys
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Forces, paths and work with non-fixed pulleys
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Forces, paths and work with block and tackle
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Forces, paths and work with multiple pulleys
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Forces on an inclined plane
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Determining the volume of solid bodies
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Determining the mass of solid bodies (beam balance)
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Determination of density
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Determining the nature of a material by measuring density
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Specific weight and buoyancy
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Period of a string pendulum
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Determining gravitational acceleration with the aid of a string pendulum
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Period of a spring oscillator