SOHO Instructions Cut out the lower bus bottom panels, sides, and top deck. Glue bottom panels together. Fold the side panels on the lines, bending tabs.

Slides:



Advertisements
Similar presentations
SOHO Instructions Cut out the lower bus bottom panels, sides, and top deck. Glue bottom panels together. Fold the side panels on the lines, bending tabs.
Advertisements

 Section the figure off into triangles, squares, rectangles, trapezoids, and/or parallelograms  Find the area of each piece using the appropriate formula.
Slab constructed cup Flatten a lump of clay into a long shape as you will be rolling out a slab long enough to wrap around a tube form. Note: finished.
Lesson Plan – Lesson 6 Surface Area Mental and Oral Starter Pupils to say how many faces, vertices and edges each 3D shape has. Main Activity Each member.
Solar Bake Off. PROCEDURE 1.1 st person traces a flap in the top of the box. Use the ruler and marker to measure a 1½” border around the lid, on the.
Magellan – Venus1:48 scale Score all fold lines and cut out the parts. The actual Magellan spacecraft was virtually all white – some model parts are blacked.
Spiral Stairs Assembly Instruction By Laser Dollhouse Designs
Voyager Spaceprobe1:48 scale Read all the instructions and review the parts sheets before starting. Note the red stars for aligning the HGA dish, support.
Pneumatic Arm Assembly Instructions
Score/Mountain Fold line Glue Tab Score/Mountain Fold glue tabs & lower tower cap. Score/Mountain Fold glue tabs & upper tower cap. PRINT ON CARDSTOCK.
Sheep Project Tempera Paint. Divide circles into smaller shapes – use light pencil lines Begin painting.
Pneumatic Arm Assembly Instructions. Contents of Pneumatic Arm Kit Wooden pieces (⅜” cross-section): 1 X 24”; 1 X 21⅛”; 8 X 7½”; 4 X 7⅛”; 4 X 7”; 2 X.
Copyright © Texas Education Agency, All rights reserved.
Darkness tent template
Aberdeen Grammar School
Hexagons & Hexagonal Prisms. Hexagons Hexagons are 6 sided shapes. Hexagons can be dimensioned in 2 different ways. 1. Across the faces. 2. Across the.
Day and Night by M.C. Escher
COLORS OF THE SUN Spectroscopy Activity
Air Racer Design and Layout.
3D Figures What is a 3D figure? A solid shape with length, width, and height rectangular prisms cube cone cylinder pyramid.
Mars Reconnaissance Orbiter1:48 scale READ ALL THE INSTRUCTIONS AND INSPECT THE PARTS SHEETS FIRST. Score fold lines and cut out the parts. High Gain Antenna.
Math Jeopardy For more information, click >>>>>> Where two faces meet edge.
Step-by-step assembly instructions
Materials: - Pencil -Notebook -Folder Agenda: Complete Bell work POP! Cylinder Rockets paragraphs due No gum, candy or chewing please! DO: Today.
Materials: - Pencil -RULER! -Notebook -Folder Agenda: Complete Bell work POP! Prism Rockets No gum, candy or chewing please! DO: Today we will plan and.
3-d shapes. This is a cube. Eight corners Six faces cube.
Building Background Finding shapes and solids Make a cylinder and a cone. JIR-Finding shapes and solids(JYBOOKS.COM) Make a cylinder with paper and tape.
17/02/03Designed by Barry Forbes Graphic Communication Hexagons & Hexagonal Prisms.
Wheels and Axles Model Assembly Instructions copyright Mechanical Kits Ltd
Directions for Explosion Box Print the following slides on cardstock. Cut all the squares on each piece of cardstock. Cut out the corners from all 3 sheets.
Print a copy of the Bookmark Template.. Select one of the templates and cut it out along the dotted lines. Cut all the way through to the edge on the.
Solid Figures Vocabulary.
Castle Project Name___________________ Period___________________ Mr. Martin- World History- Room 8.
Wheels and Axles Model Assembly Instructions copyright Mechanical Kits Ltd
Hexagons & Hexagonal Prisms.
Supplies : 1. cardboard or plastic corrugated yard signs (a 18 x 24 sign would make two stands) 2. glue gun 3. Velcro (3/4” wide) (2) 6” soft side, (2)
1.Fold color side inward and make crossed creases. Then, put your origami like this. White side is facing up. ⇒
Memory gift box leahfung.typepad.com. memory gift box opened.
Which shape column is the strongest?
Foldable Tie Book Instructions. Materials Needed 2 pieces of scrap paper Glue stick Paper Hole Punch Tool 1 piece of yarn cut to one arm’s length.
Hexagonal Prisms Developments.  A development is a flat template of a 3D shape that when folded up in the correct way makes the actual shape of the 3D.
STEP 1: ASSEMBLE INSERT PLATES 1.Assemble insert plates by press fitting roller bearing and adapter plate into assembly 1.1 Prep all mating surfaces to.
Implementing the 6th Grade GPS via Folding Geometric Shapes
May look at figures in box to give you some ideas. Geometric Solid:
Artist Portrait and Artwork
Delta Flying Saucer BOTTOM TOP Glue Delta Flying Saucer
Rocket Difficulty Time Approximately 30–35 minutes Art Deco Clock
Geometric Solids.
5 3 2 Based on Roland’s ARES and launch pad model. 7 1.
Day 1.
Workshop Rotating Platform
Workshop Rotating Platform
Pyramids.
Workshop Rotating Platform
Step-by-step assembly instructions
3rd Grade Warm and Cool Color Shape Collage
Lay two pieces of paper on top of each other. Fold paper “hotdog”.
Shape and One Point Perspective Project
Implementing the 6th Grade GPS via Folding Geometric Shapes
Step-by-step assembly instructions
Step-by-step assembly instructions
Step-by-step assembly instructions
Hydraulic Arm Assembly Instructions
Shape & Space Surface Area.
Fold Your Own Bank Activity
Tides Foldable.
Identifying the nets of 3D shapes
Print Reading.
Circles Squares or Rectangles Triangles
Which shape column is the strongest?
Presentation transcript:

SOHO Instructions Cut out the lower bus bottom panels, sides, and top deck. Glue bottom panels together. Fold the side panels on the lines, bending tabs inward. Glue the side panels to form an octagon. Glue side panels to the gray surface of the bottom panel assembly (solar cells up). Glue top deck to the top of the side panels to close out the lower bus. Cut out the main bus and bus top. Fold and glue the main bus into a square column. Fold tabs inward. Glue bus top onto the main bus. Glue the main bus assembly to the lower bus, aligning the EIT with the solar panels (note markings on bottom tabs also). Cut out and assemble the equipment boxes, folding on the lines. Glue the boxes to the main bus in the places indicated. Put glue on the side tabs and edges of the boxes. Cut out and assemble the instruments. Roll the EIT into a cylinder, glue, and fold tabs inward. Glue the top and bottom to the ends. Glue to the bus in the marked position with the cylinder’s seam against the bus. Cut out the star tracker parts. Fold and glue the box together. Color the back of the two rectangles black, then roll and glue into cylinders. Apply glue to one end of each cylinder and glue over the blue circles on the box. Glue into position with the tubes pointing to the left (overhanging the edge of the bus, see diagram for detail). Other instruments are modeled as boxes. Cut out, fold on the lines and glue. Apply glue to the back edges of the instruments and glue into position on the bus as marked – refer to the spacecraft diagram for details. Cut out the thrusters, fold and glue into square columns. Apply glue to the bottom edges and glue them to the top deck, centered on the short faces of the octagon. Use a marker to add a dot in the top square of each thruster face aimed outward from the bus. Cut out the thrust mount and roll it into a cylinder – overlapping the ends to the marked line. Check the fit with the white circle labeled HGA on the bottom of the spacecraft, then glue. Apply glue to one edge of the thrust mount and place in position around the white circle marked HGA. Cut out the High Gain Antenna (HGA) parts. Cut the circle on the solid radial line, overlap to the dotted line and glue into a cone. Bend down the legs of the reflector tripod to form a tripod. Glue the end of one leg to the edge of the HGA cone at the seam. Glue the other legs to the cone equally spaced around the edge. Tightly roll the mast into a cylinder. Glue one end of the mast to the center of the white circle marked HGA. Glue the HGA cone onto the end of the mast, pointing straight out. Copyright 2009 by John Jogerst. Not for commercial use. For personal or educational use only.

Bottom panel, top side Lower bus top deck Main bus Lower bus sides FOLD Lower bus sides Instruments UVCS EIT Align this side with bus panel marked EIT. Main bus Solar Panel TOP Equipment box 1 box 2 box 3 UVCS EIT CDS ST G M C SUM LASCO ST-star tracker bottom top Bus top M-MDI SUM-SUMER LASCO C-CELIAS CDS G-GOLF 2 1 Equipment boxes 3 Copyright 2009 by John Jogerst. Not for commercial use. For personal or educational use only.

SOHO 1:60 scale Solar and Heliospheric Observatory HGA SOHO 1:60 scale Solar and Heliospheric Observatory 9.5m across deployed solar panels Bottom panel, bottom side Glue to panel’s top side. Tripod FOLD MAST HGA – cut solid line, overlap to dotted line to shape into cone, add reflector tripod. Roll HGA mast into a tight cylinder. Glue HGA mast into center of circle; glue HGA to top of mast. HGA surround, thrust mount – roll to appropriate diameter and glue on edge around the circle marked HGA. Thrusters, glue to corners on top of the lower bus. See SOHO diagram on next page for details. Copyright 2009 by John Jogerst. Not for commercial use. For personal or educational use only.

Solar and Heliospheric Observatory 1:60 scale Cut out the graphics above and glue to a piece of wood/plywood/mdf to make the base. Use a ¼” dowel, 5-6” long to mount SOHO. Cut a slot in (or split) one end ¾” – attach the spacecraft by slipping the solar panels into the slot. Drill a hole in the base for the other end of the dowel to display the spacecraft in the attitude you want.